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Silanes

Silanes

Silanes are silicon-based compounds with one or more organic groups attached to a silicon atom. They serve as crucial building blocks in organic and inorganic synthesis, especially in surface modification, adhesion promotion, and the production of coatings and sealants. Silanes are widely used in the semiconductor industry, glass treatment, and as crosslinking agents in polymer chemistry. At CymitQuimica, we offer a diverse range of silanes designed for your research and industrial applications.

Subcategories of "Silanes"

Products of "Silanes"

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products per page.Found 1442 products on this category.
  • 3-AMINOPROPYLMETHYLBIS(TRIMETHYLSILOXY)SILANE

    CAS:
    Formula:C10H29NO2Si3
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:279.61

    Ref: 3H-SIA0604.5

    1kg
    To inquire
    14kg
    To inquire
  • TRIPHENYLSILANE

    CAS:
    Tri-substituted Silane Reducing Agent Organosilanes are hydrocarbon-like and possess the ability to serve as both ionic and free-radical reducing agents. These reagents and their reaction by-products are safer and more easily handled and disposed than many other reducing agents. The metallic nature of silicon and its low electronegativity relative to hydrogen lead to polarization of the Si-H bond yielding a hydridic hydrogen and a milder reducing agent compared to aluminum-, boron-, and other metal-based hydrides. A summary of some key silane reductions are presented in Table 1 of the Silicon-Based Reducing Agents brochure. Triphenylsilane; Triphenylsilanlyl hydride More effective radical-based reagent for reduction of organic halides than the trialkylsilanesCompares well with tri-n-butyltin hydride in reduction of enones to ketonesShows good selectivity in the reduction of cyclic hemiacetalsConverts O-acetyl furanoses and pyranoses to deoxy sugarsExtensive review of silicon based reducing agents: Larson, G.; Fry, J. L. "Ionic and Organometallic-Catalyzed Organosilane Reductions", Wipf, P., Ed.; Wiley, 2007
    Formula:C18H16Si
    Purity:97%
    Color and Shape:Off-White Solid
    Molecular weight:260.41

    Ref: 3H-SIT8665.0

    25g
    Discontinued
    2kg
    Discontinued
    100g
    Discontinued
    Discontinued product
  • Isopropoxytrimethylsilane

    CAS:
    Formula:C6H16OSi
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:132.28

    Ref: 3B-I1133

    5ml
    56.00€
    25ml
    164.00€
  • PENTAMETHYLDISILOXANE

    CAS:
    Formula:C5H16OSi2
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:148.35

    Ref: 3H-SIP6719.0

    13kg
    To inquire
    1.5kg
    To inquire
  • 1-(Trimethylsilyl)-1-propyne

    CAS:
    Formula:C6H12Si
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:112.25

    Ref: 3B-T1123

    5ml
    39.00€
    25ml
    97.00€
    100ml
    277.00€
  • 1,4-Dibromo-2,5-bis[2-(trimethylsilyl)ethynyl]benzene

    CAS:
    Formula:C16H20Br2Si2
    Purity:>98.0%(GC)
    Color and Shape:White to Light yellow powder to crystal
    Molecular weight:428.31

    Ref: 3B-D5316

    1g
    123.00€
    5g
    395.00€
  • DIMETHYLDIACETOXYSILANE

    CAS:
    Alkyl Silane - Conventional Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. Dimethyldiacetoxysilane; Diacetoxydimethylsilane Reagent for the preparation of cis-diols and corticosteroids
    Formula:C6H12O4Si
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:176.24

    Ref: 3H-SID4076.0

    2kg
    Discontinued
    100g
    Discontinued
    500g
    Discontinued
    Discontinued product
  • 1-(Trimethylsilyl)-2-naphthyl Trifluoromethanesulfonate

    CAS:
    Formula:C14H15F3O3SSi
    Purity:>96.0%(GC)
    Color and Shape:Colorless to Light yellow to Light orange clear liquid
    Molecular weight:348.41

    Ref: 3B-T2465

    1g
    184.00€
    5g
    618.00€
  • (3-Bromophenylethynyl)trimethylsilane

    CAS:
    Formula:C11H13BrSi
    Purity:95%
    Color and Shape:Solid
    Molecular weight:253.21042

    Ref: IN-DA003BRJ

    1g
    43.00€
    5g
    107.00€
    10g
    164.00€
    25g
    191.00€
    250mg
    29.00€
  • Tribenzylsilane

    CAS:
    Formula:C21H22Si
    Purity:>98.0%(GC)
    Color and Shape:White to Light yellow powder to crystal
    Molecular weight:302.49

    Ref: 3B-T1916

    5g
    94.00€
    25g
    300.00€
  • BIS[m-(2-TRIETHOXYSILYLETHYL)TOLYL]POLYSULFIDE

    CAS:
    Bis[m-(2-triethoxysilylethyl)tolyl]polysulfide Sulfur functional dipodal silaneDark, viscous liquid Coupling agent for styrene-butadiene rubber, SBR
    Formula:C30H50O6S(2-4)Si2
    Purity:85%
    Color and Shape:Dark Liquid
    Molecular weight:627-691

    Ref: 3H-SIB1820.5

    25g
    To inquire
    2kg
    To inquire
    18kg
    To inquire
  • PHENETHYLDIMETHYL(DIMETHYLAMINO)SILANE

    CAS:
    Aromatic Silane - Conventional Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. Phenethyldimethyl(dimethylamino)silane; N,N,1,1-Tetramethyl-1-(2-phenylethyl)silanamine; N,N,1,1-Tetramethyl-1-(2-phenylethyl)-silanamine Contains 10-15% α-isomer
    Formula:C12H21NSi
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:207.39

    Ref: 3H-SIP6721.2

    10g
    Discontinued
    Discontinued product
  • N,N-DIDECYL-N-METHYL-N-(3-TRIMETHOXYSILYLPROPYL)AMMONIUM CHLORIDE, 40-42% in methanol

    CAS:
    N,N-didecyl-N-methyl-N-(3-trimethoxysilylpropyl)ammonium chloride; (trimethoxysilylpropyl)didecylmethylammonium chloride; didecylmethyl[3-(trimethoxysilyl)propyl]ammonium chloride Quaternary amino functional trialkoxy silaneIn combination with TEOS (SIT7110.0), forms high pore volume xerogels with adsorptive capacityContains 3-5% Cl(CH2)3Si(OMe)340-42% in methanol
    Formula:C27H60ClNO3Si
    Color and Shape:Straw Liquid
    Molecular weight:510.32

    Ref: 3H-SID3392.0

    25g
    Discontinued
    Discontinued product
  • 2-(Trimethylsilyl)ethanol

    CAS:
    Formula:C5H14OSi
    Purity:>96.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:118.25

    Ref: 3B-T1441

    5ml
    53.00€
    25ml
    148.00€
  • 1,2-BIS(TRIETHOXYSILYL)ETHYLENE, 92%

    CAS:
    Olefin Functional Alkoxy Silane Silane coupling agents have the ability to form a durable bond between organic and inorganic materials to generate desired heterogeneous environments or to incorporate the bulk properties of different phases into a uniform composite structure. The general formula has two classes of functionality. The hydrolyzable group forms stable condensation products with siliceous surfaces and other oxides such as those of aluminum, zirconium, tin, titanium, and nickel. The organofunctional group alters the wetting or adhesion characteristics of the substrate, utilizes the substrate to catalyze chemical transformations at the heterogeneous interface, orders the interfacial region, or modifies its partition characteristics, and significantly effects the covalent bond between organic and inorganic materials. Dipodal Silane Dipodal silanes are a series of adhesion promoters that have intrinsic hydrolytic stabilities up to ~10,000 times greater than conventional silanes and are used in applications such as plastic optics, multilayer printed circuit boards and as adhesive primers for ferrous and nonferrous metals. They have the ability to form up to six bonds to a substrate compared to conventional silanes with the ability to form only three bonds to a substrate. Many conventional coupling agents are frequently used in combination with 10-40% of a non-functional dipodal silane, where the conventional coupling agent provides the appropriate functionality for the application, and the non-functional dipodal silane provides increased durability. Dipodal silanes additives enhance hydrolytic stability, which impacts on increased product shelf life, ensures better substrate bonding and also leads to improved mechanical properties in coatings as well as composite applications. 1,2-Bis(triethoxysilyl)ethylene; 4,4,7,7-Tetraethoxy-3,8-dioxa-4,7-disiladec-5-ene ~80% trans isomerForms ethylene-bridged mesoporous silicas
    Formula:C14H32O6Si2
    Purity:92%
    Color and Shape:Liquid
    Molecular weight:352.57

    Ref: 3H-SIB1820.0

    5g
    To inquire
    1kg
    To inquire
    25g
    To inquire
  • Chlorodimethyl(3-phenylpropyl)silane

    CAS:
    Formula:C11H17ClSi
    Purity:>97.0%(GC)
    Color and Shape:Colorless to Light yellow to Light orange clear liquid
    Molecular weight:212.79

    Ref: 3B-C1488

    5ml
    70.00€
    25ml
    264.00€
  • Octadecyltriethoxysilane

    CAS:
    Formula:C24H52O3Si
    Purity:>85.0%(GC)
    Color and Shape:White or Colorless to Light yellow powder to lump to clear liquid
    Molecular weight:416.76

    Ref: 3B-O0165

    25g
    104.00€
  • TRIS(TRIETHOXYSILYL)AMINE

    CAS:
    Formula:C18H45NO9Si3
    Purity:95%
    Color and Shape:Liquid
    Molecular weight:503.81

    Ref: 3H-SIT8716.4

    25g
    Discontinued
    Discontinued product
  • n-BUTYLDIMETHYLSILANE

    CAS:
    Formula:C6H16Si
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:116.28

    Ref: 3H-SIB1937.5

    25g
    Discontinued
    2.5kg
    Discontinued
    Discontinued product
  • DIETHYLDIETHOXYSILANE

    CAS:
    Formula:C8H20O2Si
    Purity:90%
    Color and Shape:Liquid
    Molecular weight:176.3287

    Ref: IN-DA00DC8Y

    1g
    59.00€
    5g
    133.00€
    25g
    295.00€
  • Triethoxy(p-tolyl)silane

    CAS:
    Formula:C13H22O3Si
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:254.40

    Ref: 3B-T3750

    1g
    43.00€
    5g
    127.00€
  • 1,2-BIS(TRIMETHOXYSILYL)DECANE

    CAS:
    Alkyl Silane - Dipodal Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. Non Functional Alkoxy Silane Silane coupling agents have the ability to form a durable bond between organic and inorganic materials to generate desired heterogeneous environments or to incorporate the bulk properties of different phases into a uniform composite structure. The general formula has two classes of functionality. The hydrolyzable group forms stable condensation products with siliceous surfaces and other oxides such as those of aluminum, zirconium, tin, titanium, and nickel. The organofunctional group alters the wetting or adhesion characteristics of the substrate, utilizes the substrate to catalyze chemical transformations at the heterogeneous interface, orders the interfacial region, or modifies its partition characteristics, and significantly effects the covalent bond between organic and inorganic materials. Dipodal Silane Dipodal silanes are a series of adhesion promoters that have intrinsic hydrolytic stabilities up to ~10,000 times greater than conventional silanes and are used in applications such as plastic optics, multilayer printed circuit boards and as adhesive primers for ferrous and nonferrous metals. They have the ability to form up to six bonds to a substrate compared to conventional silanes with the ability to form only three bonds to a substrate. Many conventional coupling agents are frequently used in combination with 10-40% of a non-functional dipodal silane, where the conventional coupling agent provides the appropriate functionality for the application, and the non-functional dipodal silane provides increased durability. Also known as bis-silanes additives enhance hydrolytic stability, which impacts on increased product shelf life, ensures better substrate bonding and also leads to improved mechanical properties in coatings as well as composite applications. 1,2-Bis(trimethoxysilyl)decane; 3,3,6,6-Tetramethoxy-4-octyl-2,7-dioxa-3,6-disilaoctane Pendant dipodal silaneEmployed in high pH HPLCEmployed in the fabrication of luminescent molecular thermometers
    Formula:C16H38O6Si2
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:382.65

    Ref: 3H-SIB1829.0

    2kg
    To inquire
    100g
    To inquire
  • METHYLTRIS(DIMETHYLSILOXY)SILANE

    CAS:
    Formula:C7H24O3Si4
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:268.61

    Ref: 3H-SIM6582.0

    25g
    Discontinued
    100g
    Discontinued
    Discontinued product
  • (Iodomethyl)trimethylsilane

    CAS:
    Formula:C4H11ISi
    Purity:>97.0%(GC)
    Color and Shape:Colorless to Light orange to Yellow clear liquid
    Molecular weight:214.12

    Ref: 3B-I0449

    10g
    81.00€
  • Trimethyl(nonafluorobutyl)silane

    CAS:
    Formula:C7H9F9Si
    Purity:98%
    Color and Shape:Liquid
    Molecular weight:292.2174887999999

    Ref: IN-DA00IML3

    1g
    157.00€
    5g
    606.00€
    25g
    To inquire
  • 1,4-Bis(trimethylsilyl)benzene

    CAS:
    Formula:C12H22Si2
    Purity:>97.0%(GC)
    Color and Shape:White to Light yellow powder to crystal
    Molecular weight:222.48

    Ref: 3B-B2463

    5g
    37.00€
    25g
    126.00€
  • Silanol terminated polydimethylsiloxane cSt 90,000-150,000

    CAS:
    DMS-S51 - Silanol terminated polydimethylsiloxane cSt 90,000-150,000
    Color and Shape:Liquid, Clear
    Molecular weight:0.0

    Ref: 10-DMS-S51

    100g
    128.00€
  • (2-BROMOETHYNYL)TRIISOPROPYLSILANE

    CAS:
    Formula:C11H21BrSi
    Purity:98%
    Color and Shape:Liquid
    Molecular weight:261.2739

    Ref: IN-DA0095GS

    1g
    26.00€
    5g
    42.00€
    10g
    49.00€
    25g
    84.00€
    50g
    125.00€
    100g
    157.00€
    250g
    311.00€
    500g
    688.00€
    250mg
    22.00€
  • N-(TRIMETHOXYSILYLPROPYL)ETHYLENEDIAMINETRIACETATE, TRIPOTASSIUM SALT, 30% in water

    CAS:
    N-(Trimethoxysilylpropyl)ethylenediaminetriacetate, tripotassium salt; trihydroxysilylpropyl edta, potassium salt; glycine, N-[2- [bis(carboxymethyl)-aminoethyl]-N-[3-(trihydroxysilyl)propyl-, potassium salt Carboxylate functional trialkoxyl silaneEssentially silanetriol, contains KClChelates metal ions30% in water
    Formula:C14H25K3N2O9Si
    Color and Shape:Liquid
    Molecular weight:510.75

    Ref: 3H-SIT8401.0

    25g
    To inquire
  • TETRAMETHYLSILANE, 99+%

    CAS:
    Tetramethylsilane; 4MS; TMS NMR gradeViscosity: 0.4 cSt?Hcomb: 3,851 kJ/mol?Hform: -232 kJ/mol?Hvap: 26.8 kJ/mol?Hfus: 6.7 kJ/molPhotoionization threshold: 8.1 eVCe: 1.838 x 10-3Vapor pressure, 20 °C: 589 mmCritical temperature: 185 °CCritical pressure: 33 atmHeat capacity: 195.2 Jmol-1K-1Dielectric constant: 1.92Intermediate for ?-SiC:H thin films by PECVD
    Formula:C4H12Si
    Purity:99%
    Color and Shape:Straw Liquid
    Molecular weight:88.22

    Ref: 3H-SIT7555.0

    100g
    To inquire
    10kg
    To inquire
    2.5kg
    To inquire
  • Disilane, 1,1,2,2-tetraphenyl-

    CAS:
    Formula:C24H22Si2
    Purity:97.0%
    Color and Shape:Solid
    Molecular weight:366.6025

    Ref: IN-DA001U3X

    ne
    To inquire
  • N-METHYLAMINOPROPYLTRIMETHOXYSILANE

    CAS:
    N-Methylaminopropyltrimethoxysilane, 3-(trimethoxysilyl)-n-methyl-1-propanamine Secondary amino functional trialkoxy silaneγc of treated surfaces: 31 mN/mpKb 25H2O: 5.18Used in microparticle surface modificationCoupling agent for UV cure and epoxy systemsOrients liquid crystalsReacts with urethane prepolymers to form moisture-curable resins
    Formula:C7H19NO3Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:193.32

    Ref: 3H-SIM6500.0

    25g
    To inquire
    2kg
    To inquire
    15kg
    To inquire
    180kg
    To inquire
  • n-OCTYLSILANE

    CAS:
    Mono-substituted Silane Reducing Agent Organosilanes are hydrocarbon-like and possess the ability to serve as both ionic and free-radical reducing agents. These reagents and their reaction by-products are safer and more easily handled and disposed than many other reducing agents. The metallic nature of silicon and its low electronegativity relative to hydrogen lead to polarization of the Si-H bond yielding a hydridic hydrogen and a milder reducing agent compared to aluminum-, boron-, and other metal-based hydrides. A summary of some key silane reductions are presented in Table 1 of the Silicon-Based Reducing Agents brochure. Trihydridosilane Silyl Hydrides are a distinct class of silanes that behave and react very differently than conventional silane coupling agents. They react with the liberation of byproduct hydrogen. Silyl hydrides can react with hydroxylic surfaces under both non-catalyzed and catalyzed conditions by a dehydrogenative coupling mechanism. Trihydridosilanes react with a variety of pure metal surfaces including gold, titanium, zirconium and amorphous silicon, by a dissociative adsorption mechanism. The reactions generally take place at room temperature and can be conducted in the vapor phase or with the pure silane or solutions of the silane in aprotic solvents. Deposition should not be conducted in water, alcohol or protic solvents. n-Octylsilane; 1-Sila-nonane Fugitive inhibitor of hydrosilylationForms SAMs on titanium, gold and silicon surfacesExtensive review of silicon based reducing agents: Larson, G.; Fry, J. L. "Ionic and Organometallic-Catalyzed Organosilane Reductions", Wipf, P., Ed.; Wiley, 2007
    Formula:C8H20Si
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:144.33

    Ref: 3H-SIO6712.5

    50g
    To inquire
  • 4-[2,2,2-Trifluoro-1-[(trimethylsilyl)oxy]ethyl]morpholine

    CAS:
    Formula:C9H18F3NO2Si
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:257.33

    Ref: 3B-T3597

    1g
    130.00€
    5g
    399.00€
  • Chlorodimethylphenylsilane

    CAS:
    Formula:C8H11ClSi
    Purity:>96.0%(GC)
    Color and Shape:Colorless to Light yellow clear liquid
    Molecular weight:170.71

    Ref: 3B-D1147

    5ml
    30.00€
    25ml
    80.00€
  • 1-(3-(Trimethoxysilyl)propyl)urea

    CAS:
    Formula:C7H18N2O4Si
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:222.3143

    Ref: IN-DA003DT9

    5g
    29.00€
    25g
    32.00€
    50g
    50.00€
    100g
    57.00€
    500g
    153.00€
  • Dimethoxymethylphenylsilane

    CAS:
    Formula:C9H14O2Si
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:182.29

    Ref: 3B-D2319

    25ml
    38.00€
    100ml
    79.00€
  • N-(3-TRIMETHOXYSILYLPROPYL)PERFLUOROHEXANAMIDE

    CAS:
    N-(3-trimethoxysilylpropyl)perfluorohexanamide; 2,2,3,3,4,4,5,5,6,6,6-undecafluoro-N-[3-(trimethoxysilyl)propyl]hexanamide Specialty amine functional trialkoxy silaneContact angle, water on treated silica surface: 105-110°γc of treated surfaces: 20.6 mN/m
    Formula:C12H16F11NO4Si
    Color and Shape:Liquid
    Molecular weight:475.33

    Ref: 3H-SIT8409.0

    10g
    Discontinued
    Discontinued product
  • 1,1,3,3-Tetramethyldisiloxane

    CAS:
    Formula:C4H12OSi2
    Purity:98%
    Color and Shape:Liquid
    Molecular weight:132.3085

    Ref: IN-DA003D6I

    25g
    25.00€
    100g
    52.00€
    250g
    71.00€
    45kg
    4,248.00€
    500g
    77.00€
  • 3-ACETOXYPROPYLMETHYLDIMETHOXYSILANE


    Formula:C8H18O4Si
    Color and Shape:Liquid
    Molecular weight:206.31

    Ref: 3H-SIA0092.0

    25g
    Discontinued
    Discontinued product
  • 1-METHOXY-1-(TRIMETHYLSILOXY)-2-METHYL-1-PROPENE

    CAS:
    Trimethylsilyl Blocking Agent Used as a protecting group for reactive hydrogens in alcohols, amines, thiols, and carboxylic acids. Organosilanes are hydrogen-like, can be introduced in high yield, and can be removed under selective conditions. They are stable over a wide range of reaction conditions and can be removed in the presence of other functional groups, including other protecting groups. The tolerance of silylated alcohols to chemical transformations summary is presented in Table 1 of the Silicon-Based Blocking Agents brochure. 1- Methoxy-1-trimethysiloxy-2-methyl-1-propene; Methyl(trimethylsilyl)dimethylketene acetal; 1-Methoxy-2-methyl-1-(trimethylsiloxy)propene Used for silylation of acids, alcohols, thiols, amides and ketonesNafion SAC-13 has been shown to be a recyclable catalyst for the trimethylsilylation of primary, secondary, and tertiary alcohols in excellent yields and short reaction timesSummary of selective deprotection conditions is provided in Table 7 through Table 20 of the Silicon-Based Blocking Agents brochure
    Formula:C8H18O2Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:174.31

    Ref: 3H-SIM6496.0

    25g
    To inquire
    2kg
    To inquire
    100g
    To inquire
    15kg
    To inquire
    160kg
    To inquire
  • (3,3-DIMETHYLBUTYL)DIMETHYLCHLOROSILANE

    CAS:
    Trialkylsilyl Blocking Agent Used as a protecting group for reactive hydrogens in alcohols, amines, thiols, and carboxylic acids. Organosilanes are hydrogen-like, can be introduced in high yield, and can be removed under selective conditions. They are stable over a wide range of reaction conditions and can be removed in the presence of other functional groups, including other protecting groups. The tolerance of silylated alcohols to chemical transformations summary is presented in Table 1 of the Silicon-Based Blocking Agents brochure. Alkyl Silane - Conventional Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. 3,3-Dimethylbutyldimethylchlorosilane; Neohexyldimethylchlorosilane Sterically hindered neohexylchlorosilane protecting groupBlocking agent, forms bonded phases for HPLCSummary of selective deprotection conditions is provided in Table 7 through Table 20 of the Silicon-Based Blocking Agents brochure
    Formula:C8H19ClSi
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:178.78

    Ref: 3H-SID4065.0

    25g
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    750g
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    165kg
    To inquire
  • (Trifluoromethyl)Trimethylsilane

    CAS:
    Formula:C4H9F3Si
    Purity:98%
    Color and Shape:Liquid
    Molecular weight:142.1950

    Ref: IN-DA003CPC

    5g
    Discontinued
    ne
    Discontinued
    10g
    Discontinued
    25g
    Discontinued
    100g
    Discontinued
    500g
    Discontinued
    Discontinued product
  • N-[3-(TRIMETHOXYSILYL)PROPYL]HEXADECANAMIDE

    CAS:
    Formula:C22H47NO4Si
    Color and Shape:White To Pale Yellow Solid
    Molecular weight:417.7

    Ref: 3H-SIT8404.0

    25g
    To inquire
  • SEPIOLITE

    CAS:
    Formula:Mg4Si6O15·6H2O
    Color and Shape:Light Gray Solid
    Molecular weight:613.82

    Ref: 3H-SIS6948.0

    6kg
    Discontinued
    500g
    Discontinued
    Discontinued product
  • n-BUTYLDIMETHYL(DIMETHYLAMINO)SILANE

    CAS:
    Trialkylsilyl Blocking Agent Used as a protecting group for reactive hydrogens in alcohols, amines, thiols, and carboxylic acids. Organosilanes are hydrogen-like, can be introduced in high yield, and can be removed under selective conditions. They are stable over a wide range of reaction conditions and can be removed in the presence of other functional groups, including other protecting groups. The tolerance of silylated alcohols to chemical transformations summary is presented in Table 1 of the Silicon-Based Blocking Agents brochure. Alkyl Silane - Conventional Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. n-Butyldimethyl(dimethylamino)silane; Trimethylsilyldimethylamine Reactive aminofunctional organosilaneHighly reactive reagent for bonded phases without acidic byproductSummary of selective deprotection conditions is provided in Table 7 through Table 20 of the Silicon-Based Blocking Agents brochure
    Formula:C8H21NSi
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:159.35

    Ref: 3H-SIB1937.0

    2kg
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    50g
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  • PHENYLDICHLOROSILANE

    CAS:
    Formula:C6H6Cl2Si
    Purity:95%
    Color and Shape:Straw Liquid
    Molecular weight:177.1

    Ref: 3H-SIP6725.0

    10g
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  • VINYLTRIMETHOXYSILANE

    CAS:
    Olefin Functional Trialkoxy Silane Silane coupling agents have the ability to form a durable bond between organic and inorganic materials to generate desired heterogeneous environments or to incorporate the bulk properties of different phases into a uniform composite structure. The general formula has two classes of functionality. The hydrolyzable group forms stable condensation products with siliceous surfaces and other oxides such as those of aluminum, zirconium, tin, titanium, and nickel. The organofunctional group alters the wetting or adhesion characteristics of the substrate, utilizes the substrate to catalyze chemical transformations at the heterogeneous interface, orders the interfacial region, or modifies its partition characteristics, and significantly effects the covalent bond between organic and inorganic materials. Alkenylsilane Cross-Coupling Agent The cross-coupling reaction is a highly useful methodology for the formation of carbon-carbon bonds. It involves two reagents, with one typically being a suitable organometallic reagent - the nucleophile - and the other a suitable organic substrate, normally an unsaturated halide, tosylate or similar - the electrophile. Vinyltrimethoxysilane; Ethenyltrimethoxysilane; Trimethoxyvinylsilane; Trimethoxysilylethylene, VTMS Viscosity: 0.6 cStCopolymerization parameters- e,Q: -0.38, 0.031Specific wetting surface area: 528 m2/gVapor pressure, 20 °C: 9 mmEmployed in two-stage and one-stage graft polymerization/crosslinking for polyethylene (PE)Copolymerizes with ethylene to form moisture crosslinkable polymersConverts arylselenyl bromides to arylvinylselenidesReacts with anhydrides to transfer both vinyl and methoxy and thus form the mixed diesterCross-couples with α-bromo esters to give α-vinyl esters in high eeUsed in microparticle surface modificationFor vinylationsAlkenyltrialkoxysilanes react w/ aryl bromides and iodides to form styrenes under fluoride- and ligand-free and aqeous conditionsReacts in presence of fluorideExtensive review of silicon based cross-coupling agents: Denmark, S. E. et al. "Organic Reactions, Volume 75" Denmark, S. E. ed., John Wiley and Sons, 233, 2011
    Formula:C5H12O3Si
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:148.23

    Ref: 3H-SIV9220.0

    25g
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    2kg
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    16kg
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    180kg
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  • N-DECYLDIMETHYLCHLOROSILANE

    CAS:
    Formula:C12H27ClSi
    Purity:96%
    Color and Shape:Liquid
    Molecular weight:234.8813

    Ref: IN-DA003SXX

    1g
    29.00€
    5g
    33.00€
    25g
    87.00€
    100g
    192.00€
  • Bis(triethoxysilyl)methane

    CAS:
    Formula:C13H32O6Si2
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:340.56

    Ref: 3B-T3936

    1g
    54.00€
    5g
    106.00€
  • Vinyltrimethoxysilane

    CAS:
    Formula:C5H12O3Si
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:148.23

    Ref: 3B-V0042

    25ml
    27.00€
    100ml
    43.00€
    500ml
    109.00€
  • VINYLTRIMETHYLSILANE

    CAS:
    Alkenylsilane Cross-Coupling Agent The cross-coupling reaction is a highly useful methodology for the formation of carbon-carbon bonds. It involves two reagents, with one typically being a suitable organometallic reagent - the nucleophile - and the other a suitable organic substrate, normally an unsaturated halide, tosylate or similar - the electrophile. Vinyltrimethylsilane; Ethenyltrimethylsilane; Trimethylsilylethene; Trimethylvinylsilane Viscosity, 20 °C: 0.5 cStΔHcomb: 4,133 kJ/molΔHfus: 7.7 kJ/molCopolymerization parameters- e,Q: 0.04, 0.029Forms polymers which can be fabricated into oxygen enrichment membranesPolymerization catalyzed by alkyllithium compoundsReacts w/ azides to form trimethylsilyl-substituted aziridinesUndergoes Heck coupling to (E)-β-substituted vinyltrimethylsilanes, which can then be cross-coupled furtherExtensive review of silicon based cross-coupling agents: Denmark, S. E. et al. "Organic Reactions, Volume 75" Denmark, S. E. ed., John Wiley and Sons, 233, 2011
    Formula:C5H12Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:100.24

    Ref: 3H-SIV9250.0

    10g
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    100g
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  • Silane, chlorodimethyl(3,3,4,4,5,5,6,6,7,7,8,8,8-tridecafluorooctyl)-

    CAS:
    Formula:C10H10ClF13Si
    Purity:98%
    Color and Shape:Solid
    Molecular weight:440.70414159999984

    Ref: IN-DA0007JY

    1g
    107.00€
    5g
    271.00€
    100mg
    54.00€
    250mg
    65.00€
  • OCTAPHENYLCYCLOTETRASILOXANE, 95%

    CAS:
    Formula:C48H40O4Si4
    Color and Shape:White Solid
    Molecular weight:793.18

    Ref: 3H-SIO6705.0

    25g
    To inquire
  • n-BUTYLDIMETHYLCHLOROSILANE

    CAS:
    Alkyl Silane - Conventional Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. n-Butyldimethylchlorosilane; Butylchlorodimethylsilane; Butyldimethylsilyl chloride; Chlorodimethyl-n-butylsilane Forms bonded phases for HPLC
    Formula:C6H15ClSi
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:150.72

    Ref: 3H-SIB1934.0

    2kg
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    100g
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    14kg
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    750g
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  • (3-PHENYLPROPYL)DIMETHYLCHLOROSILANE

    CAS:
    Aromatic Silane - Conventional Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. (3-Phenylpropyl)dimethylchlorosilane; 3-(Chlorodimethylsilylpropyl)benzene; Chlorodimethyl(3-phenylpropyl)silane
    Formula:C11H17ClSi
    Purity:97%
    Color and Shape:Pale Yellow Liquid
    Molecular weight:212.78

    Ref: 3H-SIP6743.0

    50g
    To inquire
  • HEXAMETHYLCYCLOTRISILOXANE

    CAS:
    Formula:C6H18O3Si3
    Purity:80%
    Color and Shape:Solid
    Molecular weight:222.46

    Ref: 3H-SIH6105.0

    3kg
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    10kg
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    500g
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    150kg
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  • 1,3-BIS(HYDROXYPROPYL)TETRAMETHYLDISILOXANE, tech 95

    CAS:
    Formula:C10H26O3Si2
    Purity:95%
    Color and Shape:Straw Liquid
    Molecular weight:250.48

    Ref: 3H-SIB1145.0

    25g
    To inquire
  • ETHYLDIMETHYLCHLOROSILANE

    CAS:
    Formula:C4H11ClSi
    Purity:95%
    Color and Shape:Liquid
    Molecular weight:122.6686

    Ref: IN-DA003QI2

    1g
    26.00€
    5g
    66.00€
    25g
    166.00€
  • LITHIUM HEXAMETHYLDISILAZIDE, 0.85M in hexane (19-21 wt %)

    CAS:
    Formula:C6H18LiNSi2
    Color and Shape:Yellow Liquid
    Molecular weight:167.33

    Ref: 3H-SIL6467.2

    100g
    Discontinued
    135kg
    Discontinued
    2.5kg
    Discontinued
    12.5kg
    Discontinued
    Discontinued product
  • [5,15-Bis(phenylethynyl)-10,20-bis[(triisopropylsilyl)ethynyl]porphyrinato]magnesium(II)

    CAS:
    Formula:C58H60MgN4Si2
    Purity:>95.0%(HPLC)
    Color and Shape:Blue to Dark blue powder to crystal
    Molecular weight:893.62

    Ref: 3B-B4314

    50mg
    404.00€
  • 1,1,2,2-Tetraphenyldisilane

    CAS:
    Formula:C24H22Si2
    Purity:>97.0%(GC)
    Color and Shape:White to Light yellow to Light orange powder to crystal
    Molecular weight:366.61

    Ref: 3B-T1896

    1g
    656.00€
    5g
    2,704.00€
  • 3-(Trimethylsilyl)-2-naphthyl Trifluoromethanesulfonate

    CAS:
    Formula:C14H15F3O3SSi
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Light yellow to Light orange clear liquid
    Molecular weight:348.41

    Ref: 3B-T2466

    1g
    216.00€
    5g
    731.00€
  • TRIISOPROPYLSILANE, 97%

    CAS:
    Trialkylsilyl Blocking Agent Used as a protecting group for reactive hydrogens in alcohols, amines, thiols, and carboxylic acids. Organosilanes are hydrogen-like, can be introduced in high yield, and can be removed under selective conditions. They are stable over a wide range of reaction conditions and can be removed in the presence of other functional groups, including other protecting groups. The tolerance of silylated alcohols to chemical transformations summary is presented in Table 1 of the Silicon-Based Blocking Agents brochure. Tri-substituted Silane Reducing Agent Organosilanes are hydrocarbon-like and possess the ability to serve as both ionic and free-radical reducing agents. These reagents and their reaction by-products are safer and more easily handled and disposed than many other reducing agents. The metallic nature of silicon and its low electronegativity relative to hydrogen lead to polarization of the Si-H bond yielding a hydridic hydrogen and a milder reducing agent compared to aluminum-, boron-, and other metal-based hydrides. A summary of some key silane reductions are presented in Table 1 of the Silicon-Based Reducing Agents brochure. Triisopropylsilane; Triisopropylsilylhydride; TIPS-H Silylates strong acids with loss of hydrogenSilylates 1° alcohols selectivelySteric bulk allows for selective silylation of compounds with more than one hydroxyl groupSummary of selective deprotection conditions is provided in Table 7 through Table 20 of the Silicon-Based Blocking Agents brochureVery sterically-hindered silaneBlocking agent forming derivatives stable in presence of Grignard reagentsSelectively silylates primary alcohols in presence of secondary alcoholsUsed as a cation scavenger in the deprotection of peptidesExtensive review of silicon based reducing agents: Larson, G.; Fry, J. L. "Ionic and Organometallic-Catalyzed Organosilane Reductions", Wipf, P., Ed.; Wiley, 2007
    Formula:C9H22Si
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:158.36

    Ref: 3H-SIT8385.0

    100g
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    14kg
    To inquire
    1.5kg
    To inquire
    150kg
    To inquire
  • 3-Mercaptopropyl(dimethoxy)methylsilane

    CAS:
    Formula:C6H16O2SSi
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:180.34

    Ref: 3B-M1323

    25ml
    39.00€
  • 1,5-DICHLOROHEXAMETHYLTRISILOXANE, tech

    CAS:
    Alkyl Silane - Conventional Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. 1,5-Dichlorohexamethyltrisiloxane; Hexamethyldichlorotrisiloxane; 1,5-Dichloro-1,1,3,3,5,5-hexamethyltrisiloxane ΔHvap: 47.7 kJ/molVapor pressure, 50 °C: 1 mm
    Formula:C6H18Cl2O2Si3
    Purity:92%
    Color and Shape:Straw Amber Liquid
    Molecular weight:277.37

    Ref: 3H-SID3360.0

    25g
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    100g
    To inquire
  • Trimethoxy(3,3,3-trifluoropropyl)silane

    CAS:
    Formula:C6H13F3O3Si
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:218.25

    Ref: 3B-T2720

    5g
    29.00€
    25g
    80.00€
  • 2-(4-PYRIDYLETHYL)TRIETHOXYSILANE

    CAS:
    2-(4-Pyridylethyl)triethoxysilane, 4-(triethoxysilyl)pyridine Monoamino functional trialkoxy silaneAmber liquidForms self-assembled layers which can be “nano-shaved” by scanning AFMUsed in microparticle surface modification
    Formula:C13H23NO3Si
    Purity:97%
    Color and Shape:Straw Amber Liquid
    Molecular weight:269.43

    Ref: 3H-SIP6928.0

    10g
    To inquire
  • p-TOLYLSILANE

    CAS:
    Formula:C7H10Si
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:122.24

    Ref: 3H-SIT8038.0

    10g
    Discontinued
    Discontinued product
  • NONAFLUOROHEXYLTRIMETHOXYSILANE

    CAS:
    Fluoroalkyl Silane - Conventional Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. Nonafluorohexyltrimethoxysilane; (1H,1H,2H,2H-Perfluorohexyl)trimethoxysilane Viscosity: 2 cStImproves hydrolytic stability of dental compositesTrialkoxy silane
    Formula:C9H13F9O3Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:368.27

    Ref: 3H-SIN6597.7

    10g
    Discontinued
    50g
    Discontinued
    25kg
    Discontinued
    2.5kg
    Discontinued
    250kg
    Discontinued
    Discontinued product
  • (N,N-DIETHYLAMINOMETHYL)TRIETHOXYSILANE

    CAS:
    (N,N-Diethylaminomethyl)triethoxysilane; (3-(triethoxysilyl)methyl)diethylamine Tertiary amino functional trialkoxy silaneCatalyst for neutral cure 1-part RTVs
    Formula:C11H27NO3Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:249.43

    Ref: 3H-SID3395.4

    25g
    Discontinued
    2kg
    Discontinued
    100g
    Discontinued
    16kg
    Discontinued
    Discontinued product
  • 3-(Triethoxysilyl)propyl Isocyanate

    CAS:
    Formula:C10H21NO4Si
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Light yellow clear liquid
    Molecular weight:247.37

    Ref: 3B-I0556

    25g
    45.00€
    100g
    132.00€
  • METHOXY(TRIETHYLENEOXY)UNDECYLTRIMETHOXYSILANE

    CAS:
    Tipped PEG Silane (438.68 g/mol) PEG3C11 Silane3,3-Dimethoxy-2,15,18,24-pentaoxa-3-silapentacosanePEO, Trimethoxysilane termination utilized for hydrophilic surface modificationPEGylation reagentHydrogen bonding hydrophilic silane
    Formula:C21H46O7Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:438.68

    Ref: 3H-SIM6493.7

    1g
    To inquire
    10g
    To inquire
  • Bis(trimethylsilyl)methane

    CAS:
    Formula:C7H20Si2
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:160.41

    Ref: 3B-B1857

    10ml
    147.00€
  • (Bromoethynyl)triisopropylsilane

    CAS:
    Formula:C11H21BrSi
    Purity:>95.0%(GC)(T)
    Color and Shape:Colorless to Red to Green clear liquid
    Molecular weight:261.28

    Ref: 3B-B5412

    1g
    122.00€
  • Trichlorooctadecylsilane (>99.0%)

    CAS:
    Formula:C18H37Cl3Si
    Purity:>99.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:387.93

    Ref: 3B-T3815

    1g
    174.00€
  • 3-ACRYLAMIDOPROPYLTRIS(TRIMETHYLSILOXY)SILANE, tech

    CAS:
    Formula:C15H37NO4Si4
    Purity:95%
    Color and Shape:Solid
    Molecular weight:407.8

    Ref: 3H-SIA0150.0

    10g
    To inquire
  • CHLOROMETHYLDIMETHYLCHLOROSILANE

    CAS:
    Specialty Silicon-Based Blocking Agent Used as a protecting group for reactive hydrogens in alcohols, amines, thiols, and carboxylic acids. Organosilanes are hydrogen-like, can be introduced in high yield, and can be removed under selective conditions. They are stable over a wide range of reaction conditions and can be removed in the presence of other functional groups, including other protecting groups. The tolerance of silylated alcohols to chemical transformations summary is presented in Table 1 of the Silicon-Based Blocking Agents brochure. Chloromethyldimethylchlorosilane; (Chlorodimethylsilyl)chloromethane; Chloro(chloromethyl)dimethylsilane; CMDMCS Can form cyclic products with appropriate 1,2-difunctional substratesUsed in analytical applications for greater ECD detectabilitySummary of selective deprotection conditions is provided in Table 7 through Table 20 of the Silicon-Based Blocking Agents brochure
    Formula:C3H8Cl2Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:143.09

    Ref: 3H-SIC2285.0

    2kg
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    15kg
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    18kg
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    750g
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    180kg
    To inquire
  • Trimethyl[(2-methylprop-1-en-1-yl)oxy]silane

    CAS:
    Formula:C7H16OSi
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Light yellow clear liquid
    Molecular weight:144.29

    Ref: 3B-T4325

    1g
    66.00€
    5g
    203.00€
  • 3-[(tert-Butyldimethylsilyl)oxy]-1-propanol

    CAS:
    Formula:C9H22O2Si
    Purity:%
    Color and Shape:Liquid
    Molecular weight:190.3553

    Ref: IN-DA0033K7

    1g
    25.00€
    5g
    25.00€
    10g
    33.00€
    25g
    58.00€
    100g
    140.00€
    500g
    548.00€
  • N-(2-N-BENZYLAMINOETHYL)-3-AMINOPROPYLTRIMETHOXYSILANE, tech-90

    CAS:
    N-2(-N-Benzylaminoethyl)-3-aminopropyltrimethoxysilane, N-[3-(trimethoxysilyl)propyl]-(N-1-benzyl)-1-2-ethanediamine Two internal secondary amine coupling agent for UV cure and epoxy systemsContains aminoethylaminopropyltrimethoxysilane
    Formula:C15H28N2O3Si
    Purity:90%
    Color and Shape:Amber Liquid
    Molecular weight:312.48

    Ref: 3H-SIB0956.0

    25g
    Discontinued
    100g
    Discontinued
    Discontinued product
  • ((2-Bromophenyl)ethynyl)trimethylsilane

    CAS:
    Formula:C11H13BrSi
    Purity:98%
    Color and Shape:Solid
    Molecular weight:253.21041999999997

    Ref: IN-DA003BM6

    1g
    26.00€
    5g
    63.00€
    25g
    175.00€
    100g
    656.00€
    250mg
    26.00€
  • POTASSIUM TRIMETHYLSILANOLATE, 2M in tetrahydrofuran (26-29 wt %)

    CAS:
    Formula:C3H9KOSi
    Color and Shape:Straw To Hazy Liquid
    Molecular weight:128.29

    Ref: 3H-SIP6901.2

    25g
    Discontinued
    2kg
    Discontinued
    16kg
    Discontinued
    Discontinued product
  • (2-Bromoethoxy)-tert-butyldimethylsilane

    CAS:
    Formula:C8H19BrOSi
    Purity:>96.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:239.23

    Ref: 3B-B4505

    5g
    30.00€
    25g
    100.00€
  • Silane, trimethyl(1-methylethoxy)-

    CAS:
    Formula:C6H16OSi
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:132.27614

    Ref: IN-DA0023YR

    1g
    26.00€
    5g
    51.00€
    100g
    177.00€
  • 1,3,5-Tris(trimethylsilyl)benzene

    CAS:
    Formula:C15H30Si3
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Light yellow clear liquid
    Molecular weight:294.66

    Ref: 3B-T3526

    1g
    95.00€
    5g
    368.00€
  • 11-AZIDOUNDECYLTRIMETHOXYSILANE, 95%

    CAS:
    Azide Functional Trialkoxy Silane Silane coupling agents have the ability to form a durable bond between organic and inorganic materials to generate desired heterogeneous environments or to incorporate the bulk properties of different phases into a uniform composite structure. The general formula has two classes of functionality. The hydrolyzable group forms stable condensation products with siliceous surfaces and other oxides such as those of aluminum, zirconium, tin, titanium, and nickel. The organofunctional group alters the wetting or adhesion characteristics of the substrate, utilizes the substrate to catalyze chemical transformations at the heterogeneous interface, orders the interfacial region, or modifies its partition characteristics, and significantly effects the covalent bond between organic and inorganic materials. 11-Azidoundecyltrimethoxysilane, 11-(trimethoxysilyl)undecyl azide Coupling agent for surface modificationUsed in "click" chemistryAVOID CONTACT WITH METALS
    Formula:C14H31N3O3Si
    Purity:95%
    Color and Shape:Straw To Amber Liquid
    Molecular weight:317.5

    Ref: 3H-SIA0795.0

    2.5g
    To inquire
  • 5-HEXENYLTRIMETHOXYSILANE, tech

    CAS:
    Olefin Functional Trialkoxy Silane Silane coupling agents have the ability to form a durable bond between organic and inorganic materials to generate desired heterogeneous environments or to incorporate the bulk properties of different phases into a uniform composite structure. The general formula has two classes of functionality. The hydrolyzable group forms stable condensation products with siliceous surfaces and other oxides such as those of aluminum, zirconium, tin, titanium, and nickel. The organofunctional group alters the wetting or adhesion characteristics of the substrate, utilizes the substrate to catalyze chemical transformations at the heterogeneous interface, orders the interfacial region, or modifies its partition characteristics, and significantly effects the covalent bond between organic and inorganic materials. 5-Hexenyltrimethoxysilane; Trimethoxysilylhexene Adhesion promoter for Pt-cure siliconesUsed in microparticle surface modification
    Formula:C9H20O3Si
    Purity:tech
    Color and Shape:Straw Liquid
    Molecular weight:204.34

    Ref: 3H-SIH6164.3

    100g
    To inquire
  • Benzene, 1,1',1''-[silylidynetris(methylene)]tris-

    CAS:
    Formula:C21H22Si
    Purity:98%
    Color and Shape:Solid
    Molecular weight:302.4849

    Ref: IN-DA001ZW9

    1g
    26.00€
    5g
    64.00€
    25g
    191.00€
  • Benzyldimethylsilane

    CAS:
    Formula:C9H14Si
    Purity:>96.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:150.30

    Ref: 3B-B5875

    10ml
    159.00€
  • 2-(TRIMETHYLSILOXY)-1,3-CYCLOHEXADIENE

    CAS:
    Formula:C9H16OSi
    Purity:94%
    Color and Shape:Liquid
    Molecular weight:168.3082

    Ref: IN-DA003F63

    250mg
    43.00€
  • Triphenylsilane

    CAS:
    Formula:C18H16Si
    Purity:96%
    Color and Shape:Solid
    Molecular weight:260.4051

    Ref: IN-DA003V62

    1g
    21.00€
    5g
    25.00€
    10g
    29.00€
    25g
    46.00€
    100g
    113.00€
    500g
    315.00€
  • 3-AMINOPROPYLTRIETHOXYSILANE

    CAS:
    Monoamine Functional Trialkoxy Silane Silane coupling agents have the ability to form a durable bond between organic and inorganic materials to generate desired heterogeneous environments or to incorporate the bulk properties of different phases into a uniform composite structure. The general formula has two classes of functionality. The hydrolyzable group forms stable condensation products with siliceous surfaces and other oxides such as those of aluminum, zirconium, tin, titanium, and nickel. The organofunctional group alters the wetting or adhesion characteristics of the substrate, utilizes the substrate to catalyze chemical transformations at the heterogeneous interface, orders the interfacial region, or modifies its partition characteristics, and significantly effects the covalent bond between organic and inorganic materials. 3-Aminopropyltriethoxysilane, ?-Aminopropyltriethoxysilane, Triethoxysilylpropylamine, APTES, AMEO, GAPS, A-1100 Viscosity: 1.6 cSt?Hvap: 11.8 kcal/molTreated surface contact angle, water: 59°?c of treated surfaces: 37.5 mN/mSpecific wetting surface: 353 m2/gVapor pressure, 100 °C: 10 mmWidely used coupling agent for phenolic, epoxy, polyamide, and polycarbonate resinsUsed to bind Cu(salicylaldimine) to silicaEffects immobilization of enzymesUsed in microparticle surface modificationBase silane in SIVATE A610 and SIVATE E610Low fluorescence grade for high throughput screening available as SIA0610.1
    Formula:C9H23NO3Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:221.37

    Ref: 3H-SIA0610.0

    25g
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    2kg
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    16kg
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    180kg
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  • 1,3-BIS(4-BIPHENYL)-1,1,3,3-TETRAMETHYLDISILAZANE, 95%

    CAS:
    Phenyl-Containing Blocking Agent Used as a protecting group for reactive hydrogens in alcohols, amines, thiols, and carboxylic acids. Organosilanes are hydrogen-like, can be introduced in high yield, and can be removed under selective conditions. They are stable over a wide range of reaction conditions and can be removed in the presence of other functional groups, including other protecting groups. The tolerance of silylated alcohols to chemical transformations summary is presented in Table 1 of the Silicon-Based Blocking Agents brochure. 1,3-Bis(4-biphenyl)-1,1,3,3-tetramethyldisilazane Reactivity and stability similar to that of SID4586.0Summary of selective deprotection conditions is provided in Table 7 through Table 20 of the Silicon-Based Blocking Agents brochure
    Formula:C28H31NSi2
    Purity:95%
    Color and Shape:White Solid
    Molecular weight:437.73

    Ref: 3H-SIB1026.4

    10g
    To inquire
  • 1,3-BIS(CYANOPROPYL)TETRAMETHYLDISILOXANE, 92%

    CAS:
    Formula:C12H24N2OSi2
    Purity:92%
    Color and Shape:Straw Liquid
    Molecular weight:268.51

    Ref: 3H-SIB1058.0

    10g
    To inquire
  • Triisopropylsilylacetylene

    CAS:
    Formula:C11H22Si
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:182.38

    Ref: 3B-T1683

    5ml
    77.00€
    25ml
    286.00€
  • (3-GLYCIDOXYPROPYL)BIS(TRIMETHYLSILOXY)METHYLSILANE

    CAS:
    Formula:C13H32O4Si3
    Purity:97% including isomers
    Color and Shape:Straw Liquid
    Molecular weight:336.65

    Ref: 3H-SIG5820.0

    10g
    To inquire
    2kg
    To inquire
    50g
    To inquire
  • 2-(3,4-Epoxycyclohexyl)ethyltrimethoxysilane

    CAS:
    Formula:C11H22O4Si
    Purity:>97.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:246.38

    Ref: 3B-E0327

    25ml
    28.00€
    500ml
    209.00€
  • (3,3,3-TRIFLUOROPROPYL)METHYLCYCLOTRISILOXANE

    CAS:
    Formula:C12H21F9O3Si3
    Purity:97%
    Color and Shape:White Solid
    Molecular weight:468.55

    Ref: 3H-SIT8366.0

    25g
    To inquire
    4kg
    To inquire
    20kg
    To inquire
    225kg
    To inquire
  • 3-PHENOXYPROPYLDIMETHYLCHLOROSILANE

    CAS:
    Aromatic Silane - Conventional Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. 3-Phenoxypropyldimethylchlorosilane; (3-Dimethylchlorosilylpropoxy)benzene
    Formula:C11H17ClOSi
    Purity:97%
    Color and Shape:Pale Yellow Liquid
    Molecular weight:228.78

    Ref: 3H-SIP6723.2

    100g
    To inquire
  • Trimethylsilylmethyl Azide

    CAS:
    Formula:C4H11N3Si
    Purity:>97.0%(GC)
    Color and Shape:Colorless to Yellow to Green clear liquid
    Molecular weight:129.24

    Ref: 3B-T1184

    1g
    95.00€
    5g
    293.00€
  • AMINOPROPYL/VINYLSILSESQUIOXANE IN AQUEOUS SOLUTION

    CAS:
    aminopropyl/vinyl/silsesquioxane, (60-65% aminopropylsilsesquioxane)-(35-40% vinyl-silsesquioxane) copolymer 25-28% in water; trihydroxysilylpropylamine-vinylsilanetriol condensate; aminopropylsilsesquioxane vinylsilsequioxane copolymer oligomer Water-borne amino/vinyl alkyl silsesquioxane oligomersAdditives for acrylic latex sealantsLow VOC coupling agent for siliceous surfacesOrganic and silanol functionalityAmphotericPrimers for metalsViscosity: 3-10 cStMole % functional group: 60-65pH: 10-11Internal hydrogen bonding stabilizes solution
    Color and Shape:Straw Liquid
    Molecular weight:250-500

    Ref: 3H-WSAV-6511

    3kg
    To inquire
    18kg
    To inquire
    200kg
    To inquire
  • (2-Bromoethoxy)(tert-butyl)dimethylsilane

    CAS:
    Formula:C8H19BrOSi
    Purity:96%
    Color and Shape:Liquid
    Molecular weight:239.2254

    Ref: IN-DA0038DU

    1g
    25.00€
    5g
    25.00€
    10g
    29.00€
    1kg
    631.00€
    25g
    46.00€
    100g
    107.00€
    500g
    257.00€
  • 3-Trimethylsilylpropynal

    CAS:
    Formula:C6H10OSi
    Purity:>97.0%(GC)
    Color and Shape:Light yellow to Yellow to Orange clear liquid
    Molecular weight:126.23

    Ref: 3B-T2907

    1g
    145.00€
    5g
    479.00€
  • 3-CYANOPROPYLDIISOPROPYL(DIMETHYLAMINO)SILANE

    CAS:
    Formula:C12H26N2Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:226.44

    Ref: 3H-SIC2451.0

    100g
    To inquire
  • 3-(Dimethylsilyloxy)-1,1,5,5-tetramethyl-3-phenyltrisiloxane

    CAS:
    Formula:C12H26O3Si4
    Purity:>96.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:330.68

    Ref: 3B-D3762

    25ml
    109.00€
  • (CYCLOHEXYLAMINOMETHYL)TRIETHOXYSILANE

    CAS:
    (N-Cyclohexylaminomethyl)triethoxysilane; [(triethoxysilyl)methyl]aminocyclohexane Secondary amino functional trialkoxy silaneInternal secondary amine coupling agent for UV cure and epoxy systemsUsed in microparticle surface modification
    Formula:C13H29NO3Si
    Purity:95%
    Color and Shape:Clear To Straw Liquid
    Molecular weight:275.46

    Ref: 3H-SIC2464.2

    25g
    To inquire
    100g
    To inquire
  • HEXAMETHOXYDISILANE, tech-95

    CAS:
    Formula:C6H18O6Si2
    Purity:95%
    Color and Shape:Liquid
    Molecular weight:242.37

    Ref: 3H-SIH6101.0

    5g
    Discontinued
    Discontinued product
  • 1-(Trimethylsilyloxy)cyclopentene

    CAS:
    Formula:C8H16OSi
    Purity:>97.0%(GC)
    Color and Shape:Colorless to Light yellow to Light orange clear liquid
    Molecular weight:156.30

    Ref: 3B-T1648

    10ml
    189.00€
  • 2-(tert-Butyldimethylsilyl)-N-phenylbenzamide

    CAS:
    Formula:C19H25NOSi
    Purity:98%
    Color and Shape:Solid
    Molecular weight:311.4934

    Ref: IN-DA003TEZ

    1g
    104.00€
  • TRIMETHYLCHLOROSILANE, 99+%

    CAS:
    Formula:C3H9ClSi
    Purity:99%
    Color and Shape:Straw Liquid
    Molecular weight:108.64

    Ref: 3H-SIT8510.1

    3kg
    To inquire
    15kg
    To inquire
    750g
    To inquire
    170kg
    To inquire
  • 2-(Trimethylsiloxy)-1,3-butadiene

    CAS:
    Formula:C7H14OSi
    Purity:95%
    Color and Shape:Liquid
    Molecular weight:142.271

    Ref: IN-DA003F62

    1g
    56.00€
    5g
    109.00€
    1kg
    To inquire
    25g
    242.00€
    500g
    To inquire
  • 1,2-BIS[(DIMETHYLAMINO)DIMETHYLSILYL]ETHANE

    CAS:
    Formula:C10H28N2Si2
    Purity:90%
    Color and Shape:Liquid
    Molecular weight:232.5137

    Ref: IN-DA003DD2

    1g
    47.00€
    5g
    103.00€
    25g
    198.00€
  • DIMETHYLETHOXYSILANE

    CAS:
    Tri-substituted Silane Reducing Agent Organosilanes are hydrocarbon-like and possess the ability to serve as both ionic and free-radical reducing agents. These reagents and their reaction by-products are safer and more easily handled and disposed than many other reducing agents. The metallic nature of silicon and its low electronegativity relative to hydrogen lead to polarization of the Si-H bond yielding a hydridic hydrogen and a milder reducing agent compared to aluminum-, boron-, and other metal-based hydrides. A summary of some key silane reductions are presented in Table 1 of the Silicon-Based Reducing Agents brochure. Alkyl Silane - Conventional Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. Dimethylethoxysilane; Ethoxydimethylsilane Vapor pressure, 20 °C: 281 mmUndergoes hydrosilylation reactionsWaterproofing agent for space shuttle thermal tilesWill form high-boiling polymeric by-products with aqueous work-upExtensive review of silicon based reducing agents: Larson, G.; Fry, J. L. "Ionic and Organometallic-Catalyzed Organosilane Reductions", Wipf, P., Ed.; Wiley, 2007
    Formula:C4H12OSi
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:104.22

    Ref: 3H-SID4125.0

    2.5kg
    To inquire
  • (Triisopropylsilyl)acetylene

    CAS:
    Formula:C11H22Si
    Purity:98%
    Color and Shape:Liquid
    Molecular weight:182.3779

    Ref: IN-DA0034XD

    1g
    25.00€
    5g
    29.00€
    10g
    36.00€
    1kg
    To inquire
    25g
    63.00€
    100g
    120.00€
    250g
    192.00€
    500g
    360.00€
  • (3-ACETAMIDOPROPYL)TRIMETHOXYSILANE

    CAS:
    Formula:C8H19NO4Si
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:221.33

    Ref: 3H-SIA0006.0

    10g
    To inquire
  • 3-Glycidyloxypropyl(dimethoxy)methylsilane

    CAS:
    Formula:C9H20O4Si
    Purity:>96.0%(GC)
    Color and Shape:Colorless to Light yellow clear liquid
    Molecular weight:220.34

    Ref: 3B-G0261

    25g
    48.00€
    500g
    361.00€
  • 1,1,1,5,5,5-Hexamethyl-3-phenyl-3-(trimethylsilyloxy)trisiloxane

    CAS:
    Formula:C15H32O3Si4
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:372.76

    Ref: 3B-H1460

    25g
    53.00€
  • (3-TRIETHOXYSILYL)PROPYLSUCCINIC ANHYDRIDE, 95%

    CAS:
    Anhydride Functional Trialkoxy Silane Silane coupling agents have the ability to form a durable bond between organic and inorganic materials to generate desired heterogeneous environments or to incorporate the bulk properties of different phases into a uniform composite structure. The general formula has two classes of functionality. The hydrolyzable group forms stable condensation products with siliceous surfaces and other oxides such as those of aluminum, zirconium, tin, titanium, and nickel. The organofunctional group alters the wetting or adhesion characteristics of the substrate, utilizes the substrate to catalyze chemical transformations at the heterogeneous interface, orders the interfacial region, or modifies its partition characteristics, and significantly effects the covalent bond between organic and inorganic materials. 3-Triethoxysilylpropylsuccinic anhydride Viscosity: 20 cStCoupling agent for dibasic surfacesAcetic acid-catalyzed hydrolysis yields succinct acid derivativesHardener, coupling agent for for epoxy resins
    Formula:C13H24O6Si
    Purity:95%
    Color and Shape:Straw Liquid
    Molecular weight:304.41

    Ref: 3H-SIT8192.6

    25g
    To inquire
    2kg
    To inquire
    100g
    To inquire
    18kg
    To inquire
    200kg
    To inquire
  • Methanesulfonic acid, 1,1,1-trifluoro-, 1-(trimethylsilyl)-2-naphthalenyl ester

    CAS:
    Formula:C14H15F3O3SSi
    Purity:96%
    Color and Shape:Liquid
    Molecular weight:348.4128

    Ref: IN-DA002QWU

    100mg
    102.00€
    250mg
    139.00€
  • Dimethylphenylsilane

    CAS:
    Formula:C8H12Si
    Purity:>97.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:136.27

    Ref: 3B-D2196

    5ml
    45.00€
    25ml
    126.00€
  • ISOOCTYLTRIETHOXYSILANE

    CAS:
    Alkyl Silane - Conventional Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. Isooctyltriethoxysilane; Triethoxysilyl-2,4,4-trimethypentane Viscosity: 2.1 cStVapor pressure, 112 °C: 10mmArchitectural water-repellentWater scavenger for sealed lubricant systemsTrialkoxy silane
    Formula:C14H32O3Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:276.48

    Ref: 3H-SII6457.5

    2kg
    To inquire
    15kg
    To inquire
    175kg
    To inquire
  • Silane, (bromomethyl)trimethyl-

    CAS:
    Formula:C4H11BrSi
    Purity:98%
    Color and Shape:Liquid
    Molecular weight:167.1196

    Ref: IN-DA0023VR

    1g
    26.00€
    5g
    69.00€
    25g
    175.00€
    100g
    652.00€
  • tert-Butyldimethyl(2-propynyloxy)silane

    CAS:
    Formula:C9H18OSi
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Light orange to Yellow clear liquid
    Molecular weight:170.33

    Ref: 3B-B5163

    5ml
    63.00€
    25ml
    185.00€
  • Trimethyl(vinyloxy)silane

    CAS:
    Formula:C5H12OSi
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:116.24

    Ref: 3B-T2561

    1g
    35.00€
    5g
    89.00€
  • Trimethyl(4-vinylphenyl)silane (stabilized with TBC)

    CAS:
    Formula:C11H16Si
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Light yellow clear liquid
    Molecular weight:176.33

    Ref: 3B-T3919

    1g
    125.00€
    250mg
    43.00€
  • 1,1,1,3,3-Pentamethyldisiloxane

    CAS:
    Formula:C5H16OSi2
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:148.35

    Ref: 3B-P1535

    5ml
    46.00€
    25ml
    148.00€
  • Iodonium, phenyl[2-(trimethylsilyl)phenyl]-, 1,1,1-trifluoromethanesulfonate (1:1)

    CAS:
    Formula:C16H18F3IO3SSi
    Purity:97%
    Color and Shape:Solid
    Molecular weight:502.3625

    Ref: IN-DA001UYT

    50mg
    50.00€
    250mg
    126.00€
  • Octavinyloctasilasesquioxane

    CAS:
    Formula:C16H24O12Si8
    Color and Shape:White to Almost white powder to crystal
    Molecular weight:633.04

    Ref: 3B-O0491

    1g
    67.00€
    5g
    202.00€
  • 1,5-Dimethyl-2,4-bis[2-(trimethylsilyl)ethynyl]benzene

    CAS:
    Formula:C18H26Si2
    Purity:>97.0%(GC)
    Color and Shape:White to Light yellow powder to crystal
    Molecular weight:298.58

    Ref: 3B-D5029

    1g
    60.00€
    5g
    177.00€
  • SILICON DIOXIDE, amorphous GEL, 30% in isopropanol

    CAS:
    Formula:SiO2
    Color and Shape:Translucent Liquid
    Molecular weight:60.09

    Ref: 3H-SIS6963.0

    18kg
    To inquire
    500g
    To inquire
    2.5kg
    To inquire
  • Aminopropyl terminated polydimethylsiloxane cSt 100-120

    CAS:
    DMS-A21 - Aminopropyl terminated polydimethylsiloxane cSt 100-120
    Color and Shape:Liquid, Clear
    Molecular weight:338.187722538

    Ref: 10-DMS-A21

    100g
    To inquire
  • TETRAMETHOXYSILANE, 97%

    CAS:
    Formula:C4H12O4Si
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:152.22

    Ref: 3H-SIT7510.0

    200kg
    To inquire
  • 1-Methoxy-1-trimethylsilyloxypropene

    CAS:
    Formula:C7H16O2Si
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:160.29

    Ref: 3B-M1199

    1g
    137.00€
    5g
    454.00€
  • Trimethylsilylmethyl Acetate

    CAS:
    Formula:C6H14O2Si
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Light yellow clear liquid
    Molecular weight:146.26

    Ref: 3B-A1613

    5g
    46.00€
    25g
    128.00€
  • (3-Bromopropoxy)-tert-butyldimethylsilane

    CAS:
    Formula:C9H21BrOSi
    Purity:96%
    Color and Shape:Liquid
    Molecular weight:253.25194000000005

    Ref: IN-DA003BRK

    1g
    21.00€
    5g
    25.00€
    10g
    30.00€
    25g
    50.00€
    100g
    131.00€
    500g
    305.00€
  • PENTAVINYLPENTAMETHYLCYCLOPENTASILOXANE, 92%

    CAS:
    Formula:C15H30O5Si5
    Purity:92%
    Color and Shape:Liquid
    Molecular weight:430.82

    Ref: 3H-SIP6719.7

    10g
    To inquire
    50g
    To inquire
  • VINYLMETHYLDICHLOROSILANE

    CAS:
    Alkenylsilane Cross-Coupling Agent The cross-coupling reaction is a highly useful methodology for the formation of carbon-carbon bonds. It involves two reagents, with one typically being a suitable organometallic reagent - the nucleophile - and the other a suitable organic substrate, normally an unsaturated halide, tosylate or similar - the electrophile. Vinylmethyldichlorosilane; Dichlorovinylmethylsilane; Methylvinyldichlorosilane; Dichloroethenylmethylsilane Viscosity: 0.70 cStΔHvap: 33.9 kJ/molCritical temperature: 272 °CCoefficient of thermal expansion: 1.4 x 10-3Reacts to vinylate aryl halides under NaOH-moderated conditionsUsed as a tether in synthesis of C-glycosidesExtensive review of silicon based cross-coupling agents: Denmark, S. E. et al. "Organic Reactions, Volume 75" Denmark, S. E. ed., John Wiley and Sons, 233, 2011
    Formula:C3H6Cl2Si
    Purity:97%
    Color and Shape:Straw Amber Liquid
    Molecular weight:141.07

    Ref: 3H-SIV9084.0

    25g
    To inquire
  • Trichlorohexylsilane

    CAS:
    Formula:C6H13Cl3Si
    Purity:>97.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:219.61

    Ref: 3B-H0547

    25ml
    139.00€
  • 1,2-BIS(CHLORODIMETHYLSILYL)ETHANE

    CAS:
    Alkyl Silane - Dipodal Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. Bridging Silicon-Based Blocking Agent Used as a protecting group for reactive hydrogens in alcohols, amines, thiols, and carboxylic acids. Organosilanes are hydrogen-like, can be introduced in high yield, and can be removed under selective conditions. They are stable over a wide range of reaction conditions and can be removed in the presence of other functional groups, including other protecting groups. The tolerance of silylated alcohols to chemical transformations summary is presented in Table 1 of the Silicon-Based Blocking Agents brochure. Dipodal Silane Dipodal silanes are a series of adhesion promoters that have intrinsic hydrolytic stabilities up to ~10,000 times greater than conventional silanes and are used in applications such as plastic optics, multilayer printed circuit boards and as adhesive primers for ferrous and nonferrous metals. They have the ability to form up to six bonds to a substrate compared to conventional silanes with the ability to form only three bonds to a substrate. Many conventional coupling agents are frequently used in combination with 10-40% of a non-functional dipodal silane, where the conventional coupling agent provides the appropriate functionality for the application, and the non-functional dipodal silane provides increased durability. Also known as bis-silanes additives enhance hydrolytic stability, which impacts on increased product shelf life, ensures better substrate bonding and also leads to improved mechanical properties in coatings as well as composite applications. Bis(dimethylchlorosilyl)ethane; Tetramethyldichlorodisilethylene; Ethylenebis[chlorodimethylsilane]; STABASE-Cl Protection for 1° amines, including amino acid estersSummary of selective deprotection conditions is provided in Table 7 through Table 20 of the Silicon-Based Blocking Agents brochure
    Formula:C6H16Cl2Si2
    Purity:97%
    Color and Shape:Off-White Solid
    Molecular weight:215.27

    Ref: 3H-SIB1042.0

    2kg
    To inquire
    100g
    To inquire
    18kg
    To inquire
  • 3-CYANOPROPYLDIMETHYLCHLOROSILANE

    CAS:
    Formula:C6H12ClNSi
    Purity:97%
    Color and Shape:Straw Amber Liquid
    Molecular weight:161.71

    Ref: 3H-SIC2452.0

    25g
    To inquire
  • TRIS(DIMETHYLAMINO)METHYLSILANE

    CAS:
    Formula:C7H21N3Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:175.35

    Ref: 3H-SIT8712.0

    10g
    To inquire
  • VINYLMETHYLDIETHOXYSILANE

    CAS:
    Olefin Functional Dialkoxy Silane Silane coupling agents have the ability to form a durable bond between organic and inorganic materials to generate desired heterogeneous environments or to incorporate the bulk properties of different phases into a uniform composite structure. The general formula has two classes of functionality. The hydrolyzable group forms stable condensation products with siliceous surfaces and other oxides such as those of aluminum, zirconium, tin, titanium, and nickel. The organofunctional group alters the wetting or adhesion characteristics of the substrate, utilizes the substrate to catalyze chemical transformations at the heterogeneous interface, orders the interfacial region, or modifies its partition characteristics, and significantly effects the covalent bond between organic and inorganic materials. Vinylmethyldiethoxysilane; Methylvinyldiethoxysilane; (Diethoxymethyl)silylethylene Used in microparticle surface modificationDipole moment: 1.27 debyeCopolymerization parameters- e,Q; -0.86, 0.020Chain extender, crosslinker for silicone RTVs and hydroxy-functional resins
    Formula:C7H16O2Si
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:160.29

    Ref: 3H-SIV9085.0

    25g
    To inquire
  • DI-n-OCTYLDICHLOROSILANE

    CAS:
    Alkyl Silane - Conventional Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. Di-n-octyldichlorosilane; Dichlorodi-n-octylsilane
    Formula:C16H34Cl2Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:325.44

    Ref: 3H-SID4400.0

    25g
    Discontinued
    100g
    Discontinued
    Discontinued product
  • Silane, diethoxymethyl-

    CAS:
    Formula:C5H14O2Si
    Purity:95%
    Color and Shape:Liquid
    Molecular weight:134.24896

    Ref: IN-DA0028OV

    1g
    65.00€
    250mg
    39.00€
  • ((CHLOROMETHYL)PHENYLETHYL)TRIMETHOXYSILANE

    CAS:
    Halogen Functional Trialkoxy Silane Silane coupling agents have the ability to form a durable bond between organic and inorganic materials to generate desired heterogeneous environments or to incorporate the bulk properties of different phases into a uniform composite structure. The general formula has two classes of functionality. The hydrolyzable group forms stable condensation products with siliceous surfaces and other oxides such as those of aluminum, zirconium, tin, titanium, and nickel. The organofunctional group alters the wetting or adhesion characteristics of the substrate, utilizes the substrate to catalyze chemical transformations at the heterogeneous interface, orders the interfacial region, or modifies its partition characteristics, and significantly effects the covalent bond between organic and inorganic materials. ((Chloromethyl)phenylethyl)trimethoxysilane; [2-[3(or 4)-(Chloromethyl)phenyl]ethyl]trimethoxysilane; (Trimethoxysilylethyl)benzyl chloride Mixed m-, p- isomersUsed in microparticle surface modificationAdhesion promoter for polyphenylenesulfide and polyimide coatingsEmployed as a high temperature coupling agentDetermined by TGA a 25% weight loss of dried hydrolysates at 495 °CReagent for surface initiated atom-transfer radical-polymerization (ATRP) of N-isopropylacrylamide-butylmethacrylate copolymers
    Formula:C12H19ClO3Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:274.82

    Ref: 3H-SIC2295.5

    2kg
    To inquire
    100g
    To inquire
    18kg
    To inquire
  • LITHIUM POLYSILICATE, 20% in water

    CAS:
    Formula:Li2O11Si5
    Color and Shape:Liquid
    Molecular weight:330.3

    Ref: 3H-SIL6469.5

    1kg
    Discontinued
    100g
    Discontinued
    20kg
    Discontinued
    240kg
    Discontinued
    Discontinued product
  • N-(Adamantan-1-yl)-1,1,1,3,3,3-hexamethyl-2-(trimethylsilyl)trisilan-2-amine

    CAS:
    Formula:C19H43NSi4
    Purity:97%
    Color and Shape:Solid
    Molecular weight:397.8934

    Ref: IN-DA01X7XI

    1g
    260.00€
    5g
    To inquire
    100mg
    129.00€
    250mg
    173.00€
  • 3-Buten-1-yl(trimethyl)silane

    CAS:
    Formula:C7H16Si
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Brown clear liquid
    Molecular weight:128.29

    Ref: 3B-B6225

    5ml
    212.00€
  • Allyltrimethoxysilane

    CAS:
    Formula:C6H14O3Si
    Purity:>97.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid to slightly cloudy liquid
    Molecular weight:162.26

    Ref: 3B-A1504

    5ml
    34.00€
    25ml
    126.00€
  • Chlorotrimethylsilane

    CAS:
    Formula:C3H9ClSi
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Light yellow to Light orange clear liquid
    Molecular weight:108.64

    Ref: 3B-C0306

    25ml
    28.00€
    100ml
    33.00€
    500ml
    63.00€
  • 1,6-Bis(trichlorosilyl)hexane

    CAS:
    Formula:C6H12Cl6Si2
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Light yellow clear liquid
    Molecular weight:353.03

    Ref: 3B-B5923

    5g
    94.00€
    25g
    354.00€
  • Tris(trimethylsilyl)silane

    CAS:
    Formula:C9H28Si4
    Purity:95%
    Color and Shape:Liquid
    Molecular weight:248.66061999999994

    Ref: IN-DA003V8L

    1g
    49.00€
    5g
    108.00€
    10g
    197.00€
    25g
    247.00€
    100g
    To inquire
    250mg
    25.00€
  • 3-(N,N-DIMETHYLAMINOPROPYL)TRIMETHOXYSILANE

    CAS:
    (N,N-Dimethyl-3-aminopropyl)trimethoxysilane; N-(3-trimethoxysilyl)propyl-N,N-dimethylamine Tertiary amino functional trialkoxy silaneDerivatized silica catalyzes Michael reactions
    Formula:C8H21NO3Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:207.34

    Ref: 3H-SID3547.0

    2kg
    To inquire
    50g
    To inquire
    16kg
    To inquire
    180kg
    To inquire
  • Octavinyloctasilasesquioxane

    CAS:
    Formula:C16H24O12Si8
    Purity:95%
    Color and Shape:Solid
    Molecular weight:633.0386

    Ref: IN-DA0039PW

    1g
    26.00€
    5g
    34.00€
    10g
    51.00€
    25g
    96.00€
    100g
    208.00€
  • Oxirane, 2-[[3-(diethoxymethylsilyl)propoxy]methyl]-

    CAS:
    Formula:C11H24O4Si
    Purity:98%
    Color and Shape:Liquid
    Molecular weight:248.39136000000008

    Ref: IN-DA003BSM

    100g
    26.00€
    500g
    64.00€
  • (4-Bromophenylethynyl)trimethylsilane

    CAS:
    Formula:C11H13BrSi
    Purity:min. 98.0 %(GC)
    Color and Shape:White to Light yellow powder to crystal
    Molecular weight:253.21

    Ref: 3B-B6028

    1g
    34.00€
    5g
    117.00€
  • TRIPHENYLSILANOL

    CAS:
    Formula:C18H16OSi
    Color and Shape:Off-White Solid
    Molecular weight:276.41

    Ref: 3H-SIT8695.0

    2kg
    To inquire
  • Silane,methyltri-2-propen-1-yl-

    CAS:
    Formula:C10H18Si
    Purity:98%
    Color and Shape:Liquid
    Molecular weight:166.3354

    Ref: IN-DA007AYX

    1g
    30.00€
    5g
    57.00€
    10g
    72.00€
    25g
    137.00€
    100g
    510.00€
    250mg
    26.00€
  • 3-ACETOXYPROPYLTRIMETHOXYSILANE

    CAS:
    Ester Functional Trialkoxy Silane Silane coupling agents have the ability to form a durable bond between organic and inorganic materials to generate desired heterogeneous environments or to incorporate the bulk properties of different phases into a uniform composite structure. The general formula has two classes of functionality. The hydrolyzable group forms stable condensation products with siliceous surfaces and other oxides such as those of aluminum, zirconium, tin, titanium, and nickel. The organofunctional group alters the wetting or adhesion characteristics of the substrate, utilizes the substrate to catalyze chemical transformations at the heterogeneous interface, orders the interfacial region, or modifies its partition characteristics, and significantly effects the covalent bond between organic and inorganic materials. Hydrophilic Silane - Polar - Hydrogen Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. 3-Acetoxypropyltrimethoxysilane; 3-(Trimethoxysilylpropyl)acetate γc of treated surfaces: 37.5 mN/mForms sol-gel derived epoxidation catalyst in combination with titanium diisopropoxide bispentanedionate
    Formula:C8H18O5Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:222.31

    Ref: 3H-SIA0100.0

    25g
    Discontinued
    2kg
    Discontinued
    100g
    Discontinued
    Discontinued product
  • 2-(Trimethylsilyl)ethoxymethyltriphenylphosphonium Chloride

    CAS:
    Formula:C24H30ClOPSi
    Purity:>98.0%(T)
    Color and Shape:White to Almost white powder to crystal
    Molecular weight:429.01

    Ref: 3B-T1458

    5g
    117.00€
    25g
    358.00€
  • 4-Methyl-2-(trimethylsilyl)phenyl Trifluoromethanesulfonate

    CAS:
    Formula:C11H15F3O3SSi
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Light yellow clear liquid
    Molecular weight:312.38

    Ref: 3B-M1882

    1g
    122.00€
    5g
    551.00€
  • Disiloxane, 1,3-diethenyl-1,1,3,3-tetramethyl-

    CAS:
    Formula:C8H18OSi2
    Purity:98%
    Color and Shape:Liquid
    Molecular weight:186.39892000000003

    Ref: IN-DA002SJB

    1kg
    89.00€
    25g
    26.00€
    100g
    26.00€
    500g
    59.00€
  • Silane, (1,1-dimethylethyl)(2-iodoethoxy)dimethyl-

    CAS:
    Formula:C8H19IOSi
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:286.2258

    Ref: IN-DA0003VO

    1g
    22.00€
    5g
    34.00€
    10g
    57.00€
    25g
    86.00€
    100g
    211.00€
    500g
    630.00€
  • Triethylsilylacetylene

    CAS:
    Formula:C8H16Si
    Purity:>96.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:140.30

    Ref: 3B-T2387

    1g
    35.00€
    5g
    89.00€
  • [PERFLUORO(POLYPROPYLENEOXY)]METHOXYPROPYLTRIMETHOXYSILANE, 20% in fluorinated hydrocarbon

    CAS:
    Fluoroalkyl Silane - Conventional Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. [Perfluoro(polypropyleneoxy)]methoxypropyltrimethoxysilane; (1H,1H,2H,2H-Perfluorodecyl)trimethoxysilane; Heptadecafluorodecyltrimethoxysilane Contact angle, water: 112 ° 20% in fluorinated hydrocarbonTrialkoxy silane
    Formula:CF3CF2CF2O(CF2CF2CF2O)nCH2OCH2CH2CH2Si(OCH3)3
    Color and Shape:Colorless To Light Yellow Liquid
    Molecular weight:4000-8000

    Ref: 3H-SIP6720.72

    10g
    To inquire
  • Dimethylethoxyvinylsilane

    CAS:
    Formula:C6H14OSi
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:130.26

    Ref: 3B-V0046

    25ml
    77.00€
  • CYCLOTRIMETHYLENEDIMETHYLSILANE

    CAS:
    Formula:C5H12Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:100.24

    Ref: 3H-SIC2570.0

    5g
    Discontinued
    25g
    Discontinued
    Discontinued product
  • N-[2-(N-Vinylbenzylamino)ethyl]-3-aminopropyltrimethoxysilane Hydrochloride (30-40% in Methanol)

    CAS:
    Formula:C17H30N2O3Si·HCl
    Color and Shape:Light yellow to Brown powder to crystal
    Molecular weight:374.98

    Ref: 3B-V0050

    25ml
    46.00€
  • AMMONIUM HEXAFLUOROSILICATE

    CAS:
    Formula:H8F6N2Si
    Color and Shape:White Solid
    Molecular weight:178.14

    Ref: 3H-SIA0705.0

    20kg
    Discontinued
    250g
    Discontinued
    2.5kg
    Discontinued
    Discontinued product
  • SILICON DIOXIDE, precipitated

    CAS:
    Formula:SiO2
    Color and Shape:White Solid
    Molecular weight:60.09

    Ref: 3H-SIS6966.0

    2kg
    To inquire
  • Vinyl terminated Polydimethylsiloxane cSt 5000

    CAS:
    DMS-V35 - Vinyl terminated Polydimethylsiloxane cSt 5000
    Color and Shape:Liquid
    Molecular weight:0.0

    Ref: 10-DMS-V35

    100g
    528.00€
  • 3-METHOXY-2-(TRIMETHYLSILYL)PHENYL TRIFLUOROMETHANESULFONATE,95.0+%(GC)

    CAS:
    Formula:C11H15F3O4SSi
    Purity:95%
    Color and Shape:Liquid
    Molecular weight:328.3801

    Ref: IN-DA003JMJ

    1g
    121.00€
    5g
    231.00€
    10g
    591.00€
    100mg
    39.00€
    250mg
    55.00€
  • (4-Bromophenoxy)(tert-butyl)dimethylsilane

    CAS:
    Formula:C12H19BrOSi
    Purity:95%
    Color and Shape:Liquid
    Molecular weight:287.2682

    Ref: IN-DA003BUV

    1g
    25.00€
    5g
    39.00€
    10g
    60.00€
    25g
    91.00€
    50g
    141.00€
    100g
    144.00€
    500g
    583.00€
  • Trimethylethoxysilane

    CAS:
    Formula:C5H14OSi
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:118.25

    Ref: 3B-T1394

    25ml
    43.00€
    250ml
    97.00€
  • HEXADECYLTRIMETHOXYSILANE, 92%

    CAS:
    Alkyl Silane - Conventional Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. Hexadecyltrimethoxysilane; Trimethoxysilylhexadecane Viscosity: 7 cStWater scavengerEmployed as rheology modifier for moisture crosslinkable high-density polyethylene (HDPE)Modifier for moisture crosslinkable polyethylene (XLPE)
    Formula:C19H42O3Si
    Purity:92%
    Color and Shape:Straw Liquid
    Molecular weight:346.63

    Ref: 3H-SIH5925.0

    175kg
    To inquire
  • Allyl(chloromethyl)dimethylsilane

    CAS:
    Formula:C6H13ClSi
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:148.71

    Ref: 3B-A1326

    5g
    467.00€
  • Propanoic acid, 2-bromo-2-methyl-, 3-(trichlorosilyl)propyl ester

    CAS:
    Formula:C7H12BrCl3O2Si
    Purity:95%
    Color and Shape:Liquid
    Molecular weight:342.51748

    Ref: IN-DA006GQN

    1g
    178.00€
    200mg
    123.00€
  • 2-METHYL-6-(TRIMETHYLSILYL)PHENYL TRIFLUOROMETHANESULFONATE

    CAS:
    Formula:C11H15F3O3SSi
    Purity:94%
    Color and Shape:Liquid
    Molecular weight:312.3807

    Ref: IN-DA003HNZ

    1g
    177.00€
    5g
    701.00€
    250mg
    111.00€
  • Benzyloxytrimethylsilane

    CAS:
    Formula:C10H16OSi
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Light yellow to Light red clear liquid
    Molecular weight:180.32

    Ref: 3B-B5876

    5g
    63.00€
    25g
    188.00€
  • Hexadecyltriethoxysilane

    CAS:
    Formula:C22H48O3Si
    Purity:>85.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:388.71

    Ref: 3B-H1685

    5ml
    58.00€
    25ml
    182.00€
  • (N,N-DIMETHYLAMINO)DIMETHYLSILANE, 95%

    CAS:
    Formula:C4H13NSi
    Purity:95%
    Color and Shape:Straw Liquid
    Molecular weight:103.24

    Ref: 3H-SID3546.6

    2kg
    To inquire
  • 1,3,5-TRIVINYL-1,3,5-TRIMETHYLCYCLOTRISILAZANE

    CAS:
    Formula:C9H21N3Si3
    Purity:90%
    Color and Shape:Liquid
    Molecular weight:255.5396

    Ref: IN-DA003DGU

    1g
    59.00€
    5g
    124.00€
    25g
    277.00€
    100g
    To inquire
  • 1,3-Divinyl-1,1,3,3-tetramethyldisilazane

    CAS:
    Formula:C8H19NSi2
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Light yellow to Light orange clear liquid
    Molecular weight:185.42

    Ref: 3B-D1769

    5ml
    27.00€
    25ml
    54.00€
  • 2-(Chloromethoxy)ethyltrimethylsilane (stabilized with Diisopropylethylamine)

    CAS:
    Formula:C6H15ClOSi
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:166.72

    Ref: 3B-C1339

    5ml
    80.00€
    25ml
    292.00€
  • Trimethyl(Phenyl)Silane

    CAS:
    Formula:C9H14Si
    Purity:98%
    Color and Shape:Liquid
    Molecular weight:150.29296000000002

    Ref: IN-DA003V3K

    5g
    25.00€
    10g
    33.00€
    25g
    52.00€
    100g
    129.00€
    500g
    357.00€
  • 3-AMINOPROPYLTRIS(TRIMETHYLSILOXY)SILANE, 95%

    CAS:
    Formula:C12H35NO3Si
    Purity:95%
    Color and Shape:Straw Liquid
    Molecular weight:353.76

    Ref: 3H-SIA0620.0

    10g
    To inquire
    50g
    To inquire
  • TETRAKIS(TRIMETHYLSILOXY)TITANIUM

    CAS:
    Formula:C12H36O4Si4Ti
    Purity:97%
    Color and Shape:Pale Yellow Liquid
    Molecular weight:404.66

    Ref: 3H-SIT7305.0

    25g
    To inquire
  • 1,8-BIS(TRIETHOXYSILYL)OCTANE

    CAS:
    Alkyl Silane - Dipodal Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. Non Functional Alkoxy Silane Silane coupling agents have the ability to form a durable bond between organic and inorganic materials to generate desired heterogeneous environments or to incorporate the bulk properties of different phases into a uniform composite structure. The general formula has two classes of functionality. The hydrolyzable group forms stable condensation products with siliceous surfaces and other oxides such as those of aluminum, zirconium, tin, titanium, and nickel. The organofunctional group alters the wetting or adhesion characteristics of the substrate, utilizes the substrate to catalyze chemical transformations at the heterogeneous interface, orders the interfacial region, or modifies its partition characteristics, and significantly effects the covalent bond between organic and inorganic materials. Dipodal Silane Dipodal silanes are a series of adhesion promoters that have intrinsic hydrolytic stabilities up to ~10,000 times greater than conventional silanes and are used in applications such as plastic optics, multilayer printed circuit boards and as adhesive primers for ferrous and nonferrous metals. They have the ability to form up to six bonds to a substrate compared to conventional silanes with the ability to form only three bonds to a substrate. Many conventional coupling agents are frequently used in combination with 10-40% of a non-functional dipodal silane, where the conventional coupling agent provides the appropriate functionality for the application, and the non-functional dipodal silane provides increased durability. Also known as bis-silanes additives enhance hydrolytic stability, which impacts on increased product shelf life, ensures better substrate bonding and also leads to improved mechanical properties in coatings as well as composite applications. 1,8-Bis(triethoxysilyl)octane; 4,4,13,13-Tetraethoxy-3,14-dioxa-4,13-disilahexadecane Employed in sol-gel synthesis of mesoporous structuresCrosslinker for moisture-cure silicone RTVs with improved environmental resistanceSol-gels of α,ω-bis(trialkoxysilyl)alkanes reported
    Formula:C20H46O6Si2
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:438.76

    Ref: 3H-SIB1824.0

    2kg
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    100g
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    17kg
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  • Disilane, 1-chloro-1,1,2,2,2-pentamethyl-

    CAS:
    Formula:C5H15ClSi2
    Purity:95%
    Color and Shape:Liquid
    Molecular weight:166.7966

    Ref: IN-DA001OES

    1g
    45.00€
    5g
    125.00€
    25g
    265.00€
  • Triethoxyvinylsilane

    CAS:
    Formula:C8H18O3Si
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:190.31

    Ref: 3B-V0044

    25ml
    27.00€
    100ml
    40.00€
    500ml
    117.00€
  • 1,4-BIS(VINYLDIMETHYLSILYL)BENZENE

    CAS:
    Formula:C14H22Si2
    Purity:98%
    Color and Shape:Liquid
    Molecular weight:246.4955

    Ref: IN-DA00DC8I

    1g
    26.00€
    5g
    30.00€
    10g
    54.00€
    25g
    75.00€
    100g
    191.00€
  • Pentyltriethoxysilane

    CAS:
    Formula:C11H26O3Si
    Purity:>97.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:234.41

    Ref: 3B-P0736

    25ml
    80.00€
  • Trichloro(6-phenylhexyl)silane

    CAS:
    Formula:C12H17Cl3Si
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:295.70

    Ref: 3B-T2854

    5g
    122.00€
    25g
    403.00€
  • 1,3-BIS(HEPTADECAFLUORO-1,1,2,2-TETRAHYDRODECYL)TETRAMETHYLDISILOXANE

    CAS:
    Formula:C24H20F34OSi2
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:1026.51

    Ref: 3H-SIB1120.0

    10g
    Discontinued
    Discontinued product
  • Hexamethyldisilane

    CAS:
    Formula:C6H18Si2
    Purity:>98.0%(GC)
    Color and Shape:White or Colorless to Light yellow powder to lump to clear liquid
    Molecular weight:146.38

    Ref: 3B-H0638

    10ml
    38.00€
    100ml
    183.00€
  • DIISOPROPYLDICHLOROSILANE

    CAS:
    Bridging Silicon-Based Blocking Agent Used as a protecting group for reactive hydrogens in alcohols, amines, thiols, and carboxylic acids. Organosilanes are hydrogen-like, can be introduced in high yield, and can be removed under selective conditions. They are stable over a wide range of reaction conditions and can be removed in the presence of other functional groups, including other protecting groups. The tolerance of silylated alcohols to chemical transformations summary is presented in Table 1 of the Silicon-Based Blocking Agents brochure. Alkyl Silane - Conventional Surface Bonding Aliphatic, fluorinated aliphatic or substituted aromatic hydrocarbon substituents are the hydrophobic entities which enable silanes to induce surface hydrophobicity. The organic substitution of the silane must be non-polar. The hydrophobic effect of the organic substitution can be related to the free energy of transfer of hydrocarbon molecules from an aqueous phase to a homogeneous hydrocarbon phase. A successful hydrophobic coating must eliminate or mitigate hydrogen bonding and shield polar surfaces from interaction with water by creating a non-polar interphase. Although silane and silicone derived coatings are in general the most hydrophobic, they maintain a high degree of permeability to water vapor. This allows coatings to breathe and reduce deterioration at the coating interface associated with entrapped water. Since ions are not transported through non-polar silane and silicone coatings, they offer protection to composite structures ranging from pigmented coatings to rebar reinforced concrete. A selection guide for hydrophobic silanes can be found on pages 22-31 of the Hydrophobicity, Hydrophilicity and Silane Surface Modification brochure. Diisopropyldichlorosilane; Dichlorobis(1-methylethyl)silane; DIPS Forms bis(blocked) or tethered alcoholsUsed as tether in ring-closing-metathesis (RCM) reactionThe bifunctional nature of the reagent allows for the templating of diverse groups in intermolecular reactions and ring formationProtects 3’,5’ hydroxyls of nucleosides, but less effectively than SIT7273.0Forms tethered silyl ethers from diolsSummary of selective deprotection conditions is provided in Table 7 through Table 20 of the Silicon-Based Blocking Agents brochure
    Formula:C6H14Cl2Si
    Color and Shape:Straw Amber Liquid
    Molecular weight:185.17

    Ref: 3H-SID3537.0

    1kg
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    2kg
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    50g
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    18kg
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  • TETRAPHENYLSILANE

    CAS:
    Formula:C24H20Si
    Color and Shape:Off-White Solid
    Molecular weight:336.51

    Ref: 3H-SIT7755.0

    10g
    Discontinued
    Discontinued product
  • (tert-butyldimethylsilyloxy)acetaldehyde

    CAS:
    Formula:C8H18O2Si
    Purity:95%
    Color and Shape:Liquid
    Molecular weight:174.3128

    Ref: IN-DA0006UO

    1g
    26.00€
    5g
    61.00€
    10g
    109.00€
    25g
    208.00€
    50g
    253.00€
    100g
    670.00€
    500g
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    250mg
    25.00€
  • STYRYLETHYLTRIS(TRIMETHYLSILOXY)SILANE, mixed isomers, tech

    CAS:
    Formula:C19H38O3Si4
    Purity:tech
    Color and Shape:Straw Liquid
    Molecular weight:426.84

    Ref: 3H-SIS6991.0

    10g
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