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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.
  • Trichloro(phenylethyl)silane (mixture of isomers)

    CAS:
    Formula:C8H9Cl3Si
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Light yellow to Light orange clear liquid
    Molecular weight:239.60

    Ref: 3B-T2852

    25g
    77.00€
  • 1,1,3,3-TETRAMETHYL-1,3-DIMETHOXYDISILOXANE

    CAS:
    Formula:C6H18O3Si2
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:194.38

    Ref: 3H-SIT7535.0

    25g
    Discontinued
    Discontinued product
  • 3-[(1,3-Dimethylbutylidene)amino]propyltriethoxysilane [mixture of (E)- and (Z)- isomers]

    CAS:
    Formula:C15H33NO3Si
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Light yellow clear liquid
    Molecular weight:303.52

    Ref: 3B-D6172

    25g
    37.00€
    100g
    84.00€
  • 3-Glycidyloxypropyltrimethoxysilane

    CAS:
    Formula:C9H20O5Si
    Purity:>97.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:236.34

    Ref: 3B-G0210

    25g
    27.00€
    100g
    38.00€
    500g
    97.00€
  • HEXADECYLTRIETHOXYSILANE, 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. Hexadecyltriethoxysilane; Triethoxysilylhexadecane; Cetyltriethoxysilane Trialkoxy silane
    Formula:C22H48O3Si
    Purity:92%
    Color and Shape:Straw Liquid
    Molecular weight:388.71

    Ref: 3H-SIH5922.0

    100g
    To inquire
    15kg
    To inquire
  • Isobutyltrichlorosilane

    CAS:
    Formula:C4H9Cl3Si
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:191.55

    Ref: 3B-I0452

    25g
    62.00€
  • (Chloromethyl)triethoxysilane

    CAS:
    Formula:C7H17ClO3Si
    Purity:98%
    Color and Shape:Liquid
    Molecular weight:212.7466

    Ref: IN-DA003OUC

    5g
    29.00€
    10g
    39.00€
    25g
    55.00€
    100g
    128.00€
  • 3-[METHOXY(POLYETHYLENEOXY)6-9]PROPYLTRIMETHOXYSILANE, tech

    CAS:
    Tipped PEG Silane (459-591 g/mol) Methoxy-PEG-9C3-silanePEO, Trimethoxysilane termination utilized for hydrophilic surface modificationForms charge neutral coatings on CdSe quantum dots which conjugate DNAPEGylation reagentReduces non-specific binding of proteinsHydrogen bonding hydrophilic silane
    Formula:CH3O(C2H4O)6-9(CH2)3Si(OCH3)3
    Color and Shape:Clear Yellow To Amber Liquid
    Molecular weight:459-591

    Ref: 3H-SIM6492.7

    25g
    To inquire
    2kg
    To inquire
    100g
    To inquire
    20kg
    To inquire
  • Trimethoxy(p-tolyl)silane

    CAS:
    Formula:C10H16O3Si
    Purity:>97.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:212.32

    Ref: 3B-T2560

    5g
    114.00€
  • 3-CHLOROPROPYLMETHYLDIETHOXYSILANE

    CAS:
    3-Chloropropylmethyldiethoxysilane; methyldiethoxy(chloropropyl)silane; (3- chloropropyl)diethoxymethylsilane; 1-chloro-3-(methyldiethoxysilyl)propane Halogen functional dialkoxy silaneIntermediate for functional silicone polymers
    Formula:C8H19ClO2Si
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:210.77

    Ref: 3H-SIC2352.0

    2kg
    To inquire
    100g
    To inquire
  • 2,5-Bis[(trimethylsilyl)ethynyl]thiophene

    CAS:
    Formula:C14H20SSi2
    Purity:>96.0%(GC)
    Color and Shape:Light yellow to Yellow to Orange powder to crystal
    Molecular weight:276.54

    Ref: 3B-B4240

    1g
    139.00€
    5g
    482.00€
  • 3-Aminopropyldimethoxymethylsilane

    CAS:
    Formula:C6H17NO2Si
    Purity:>97.0%(GC)(T)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:163.29

    Ref: 3B-A2628

    25ml
    45.00€
    100ml
    113.00€
  • 1-Methoxy-2-methyl-1-(trimethylsiloxy)propene

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

    Ref: IN-DA0034RJ

    1g
    21.00€
    5g
    30.00€
    25g
    68.00€
    100g
    208.00€
    500g
    To inquire
  • Vinyltrimethylsilane

    CAS:
    Formula:C5H12Si
    Purity:>97.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:100.24

    Ref: 3B-V0067

    25ml
    85.00€
    100ml
    267.00€
  • DODECYLDIMETHYLCHLOROSILANE

    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. Dodecyldimethylchlorosilane; Chlorodimethylsilyldodecane
    Formula:C14H31ClSi
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:262.94

    Ref: 3H-SID4627.0

    2kg
    To inquire
    750g
    To inquire
  • DI-t-BUTYLDIFLUOROSILANE

    CAS:
    Formula:C8H18F2Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:180.31

    Ref: 3H-SID3207.0

    5g
    Discontinued
    100g
    Discontinued
    Discontinued product
  • DIPHENYLSILANEDIOL

    CAS:
    Formula:C12H12O2Si
    Color and Shape:White Solid
    Molecular weight:216.32

    Ref: 3H-SID4560.0

    100g
    To inquire
    10kg
    To inquire
  • DI-t-BUTYLCHLOROSILANE

    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. Di-tert-butylchlorosilane; Chloro-bis(1,1-dimethylethyl)silyl hydride Used in selective silylation of internal alcohols or diolsSummary of selective deprotection conditions is provided in Table 7 through Table 20 of the Silicon-Based Blocking Agents brochure
    Formula:C8H19ClSi
    Color and Shape:Liquid
    Molecular weight:178.78

    Ref: 3H-SID3120.0

    750g
    To inquire
  • Silane, 1,1'-(1,2-ethynediyl)bis[1,1,1-trimethyl-

    CAS:
    Formula:C8H18Si2
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:170.3995

    Ref: IN-DA001DVG

    1g
    25.00€
    5g
    29.00€
    10g
    30.00€
    25g
    50.00€
    50g
    73.00€
    100g
    111.00€
    250g
    168.00€
    500g
    303.00€
  • n-OCTADECYLMETHYLDICHLOROSILANE

    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-Octadecylmethyldichlorosilane; Dichloromethyl-n-octadecylsilane; Methyldichlorosilyloctadecane; Dichloromethylsilyloctadecane Contains 5-10% C18 isomersViscosity: 7 cSt
    Formula:C19H40Cl2Si
    Purity:97% including isomers
    Color and Shape:Straw Liquid
    Molecular weight:367.52

    Ref: 3H-SIO6625.0

    16kg
    To inquire
    500g
    To inquire
    3.5kg
    To inquire
  • ETHYNYLTRIMETHYLSILANE, 98%

    CAS:
    Alkynylsilane 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. Ethynyltrimethylsilane; Trimethylsilylacetylene Vapor pressure, 20 °C: 214 mmUseful in Sonogashira reactions with differentiated reactivity at each terminus leading to unsymmetrical diaryl acetylenesReacts with aryl aldehydes to give diethynylmethanes (1,4-diynes)Doped polymer films are conductiveEthynylates aromatic compoundsPrecursor to trimethylsilylethynyl copper reagentLithiated derivative (n-BuLi treatment) reacts with halotriazines to produce monomersEmployed in ortho ethenylation of phenolsUndergoes Diels-Alder reactions with butadienesConverts imines to propargyl aminesForms propargylic amines from aldehydes and amines in aqueous systemRegioselectively forms either regioisomeric enyne upon addition to propargyl amines depending on catalyst employedReacts with aryl aldehydes to form diethynylmethane derivativesUseful in the preparation of unsymmetrical diarylacetylenesExtensive 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:C5H10Si
    Purity:98%
    Color and Shape:Straw Liquid
    Molecular weight:98.22

    Ref: 3H-SIE4904.0

    5g
    Discontinued
    25g
    Discontinued
    13kg
    Discontinued
    1.5kg
    Discontinued
    140kg
    Discontinued
    Discontinued product
  • Diethoxydiethylsilane

    CAS:
    Formula:C8H20O2Si
    Purity:>93.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:176.33

    Ref: 3B-D5570

    5ml
    172.00€
  • 3-ISOCYANOTOPROPYLTRIMETHOXYSILANE, 92%

    CAS:
    3-Isocyanotopropyltrimethoxysilane; trimethoxysilylpropylisocyanate Isocyanate functional trialkoxy silaneViscosity: 1.4 cStCoupling agent for urethanes, polyols, and aminesComponent in hybrid organic/inorganic urethanes
    Formula:C7H15NO4Si
    Purity:92%
    Color and Shape:Straw Liquid
    Molecular weight:205.29

    Ref: 3H-SII6456.0

    25g
    To inquire
    2kg
    To inquire
    100g
    To inquire
    18kg
    To inquire
    200kg
    To inquire
  • 1,3,5-TRISILACYCLOHEXANE

    CAS:
    Volatile Carbosilane Carbosilanes are compounds in which the elements of silicon and carbon alternate in a molecular framework or polymeric backbone in an approximate ratio of 1:1. By appropriate selection of the carbosilane precursor and deposition conditions the silicon carbide framework can be shifted toward substituted silicon and diamond-like structures. 1,3,5-Trisilacyclohexane; Cyclotrisilmethylene; Cyclotrimethylenetrisilane Single source precursor for β-SiC by LPCVD at 800-1,000 °C
    Formula:C3H12Si3
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:132.38

    Ref: 3H-SIT8709.3

    25g
    Discontinued
    Discontinued product
  • 3-METHACRYLOXYPROPYLDIMETHYLCHLOROSILANE, tech

    CAS:
    Formula:C9H17ClO2Si
    Purity:90%
    Color and Shape:Straw Liquid
    Molecular weight:220.77

    Ref: 3H-SIM6486.2

    10g
    To inquire
    750g
    To inquire
  • Naphthalene, 1-(trimethoxysilyl)-

    CAS:
    Formula:C13H16O3Si
    Purity:98%
    Color and Shape:Solid
    Molecular weight:248.3498

    Ref: IN-DA00222J

    1g
    26.00€
    5g
    50.00€
    10g
    65.00€
    25g
    114.00€
    100g
    318.00€
  • 2-(t-BUTYLDIMETHYLSILOXY)ETHYLBROMIDE

    CAS:
    Formula:C8H19BrOSi
    Purity:97%
    Molecular weight:239.23

    Ref: 3H-SIB1939.59

    10g
    Discontinued
    Discontinued product
  • n-DECYLDIMETHYLCHLOROSILANE

    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-Decyldimethylchlorosilane; Chlorodimethylsilyldecane; Chlorodecyldimethylsilane
    Formula:C12H27ClSi
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:234.88

    Ref: 3H-SID2660.0

    100g
    To inquire
    750g
    To inquire
  • 1,7-BIS(4-TRIETHOXYSILYLPROPOXY-3-METHOXYPHENYL)-1,6-HEPTADIENE-3,5-DIONE, tech-90

    CAS:
    1,7-Bis(4-triethoxysilylpropoxy-3-methoxyphenyl)-1,6-heptadiene-3,5-dione UV active dipodal silaneUV max: 220, 232(vs), 354(broad)Metal chelating chromophore
    Formula:C39H60O12Si2
    Color and Shape:Dark Red Liquid
    Molecular weight:777.07

    Ref: 3H-SIB1824.8

    0.5g
    Discontinued
    Discontinued product
  • Trimethyl(thiophen-2-ylethynyl)silane

    CAS:
    Formula:C9H12SSi
    Purity:95%
    Color and Shape:Liquid
    Molecular weight:180.3421

    Ref: IN-DA003V3M

    1g
    33.00€
    5g
    68.00€
    25g
    181.00€
    250mg
    26.00€
  • 2-CHLOROETHYLTRICHLOROSILANE 95%

    CAS:
    Formula:C2H4Cl4Si
    Purity:95%
    Color and Shape:Straw Liquid
    Molecular weight:197.95

    Ref: 3H-SIC2270.0

    1kg
    To inquire
    25g
    To inquire
  • Benzene, [[(trimethylsilyl)methyl]sulfonyl]-

    CAS:
    Formula:C10H16O2SSi
    Purity:95%
    Color and Shape:Solid
    Molecular weight:228.3833

    Ref: IN-DA00268U

    1g
    206.00€
    5g
    To inquire
    250mg
    113.00€
  • Dimethyloctadecylchlorosilane

    CAS:
    Formula:C20H43ClSi
    Purity:>97.0%(T)
    Color and Shape:White to Almost white powder to lump
    Molecular weight:347.10

    Ref: 3B-D1560

    25ml
    117.00€
  • ALLYLTRIMETHOXYSILANE

    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. Allyltrimethoxysilane; 1-Trimethoxysilylprop-2-ene Adhesion promoter for vinyl-addition siliconesAllylation of ketones, aldehydes and imines with dual activation of a Lewis Acid and fluoride ionUsed in the regioselective generation of the thermodynamically more stable enol trimethoxysilyl ethers, which in turn are used in the asymmetric generation of quaternary carbon centersConverts arylselenyl bromides to arylallylselenidesAllylates aryl iodidesUsed in microparticle surface modificationComonomer for polyolefin polymerizationExtensive 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:C6H14O3Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:162.26

    Ref: 3H-SIA0540.0

    2kg
    To inquire
    50g
    To inquire
    16kg
    To inquire
    150kg
    To inquire
  • 3-AMINOPROPYLTRIMETHOXYSILANE, 99%

    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-Aminopropyltrimethoxysilane, Trimethoxysilylpropylamine, APTES, AMEO, GAPS, A-1100, ?-Aminopropyltrimethoxysilane Vapor pressure, 67 °: 5 mmSuperior reactivity in vapor phase and non-aqueous surface treatmentsSuperior reactivity in vapor phase and non-aqueous surface treatmentsHydrolysis rate vs SIA0610.0 : 6:1Used to immobilize Cu and Zn Schiff base precatalysts for formation of cyclic carbonatesUsed in microparticle surface modification Standard grade available as SIA0611.0
    Formula:C6H17NO3Si
    Purity:99%
    Color and Shape:Straw Liquid
    Molecular weight:179.29

    Ref: 3H-SIA0611.1

    25g
    To inquire
    100g
    To inquire
  • t-BUTYLDIMETHYLCHLOROSILANE, 2.85M in toluene, 48-52% solution

    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. tert-Butyldimethylchlorosilane; TBS-Cl; Chlorodimethyl-t-butylsilane; tert-Butylchlorodimethylsilane; Chloro(1,1-dimethylethyl)dimethylsilane 2.85M in tolueneUsed for the protection of alcohols, amines, thiols, lactams, and carboxylic acidsClean NMR characteristics of protecting groupFacile removal with flouride ion sourcesSummary of selective deprotection conditions is provided in Table 7 through Table 20 of the Silicon-Based Blocking Agents brochure
    Formula:C6H15ClSi
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:150.72

    Ref: 3H-SIB1935.5

    2kg
    Discontinued
    100g
    Discontinued
    15kg
    Discontinued
    750g
    Discontinued
    160kg
    Discontinued
    Discontinued product
  • TRIS(SILYLMETHYL)SILANE

    CAS:
    Volatile Carbosilane Carbosilanes are compounds in which the elements of silicon and carbon alternate in a molecular framework or polymeric backbone in an approximate ratio of 1:1. By appropriate selection of the carbosilane precursor and deposition conditions the silicon carbide framework can be shifted toward substituted silicon and diamond-like structures. Tris(silylmethyl)silane
    Formula:C3H16Si4
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:164.48

    Ref: 3H-SIT8715.9

    25g
    Discontinued
    Discontinued product
  • 2-Bromo-5-(trimethylsilyl)thiophene

    CAS:
    Formula:C7H11BrSSi
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Light yellow clear liquid
    Molecular weight:235.21

    Ref: 3B-B4855

    1g
    145.00€
    5g
    547.00€
  • n-DECYLTRICHLOROSILANE

    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-Decyltrichlorosilane; Trichlorosilyldecane; Trichlorodecylsilane
    Formula:C10H21Cl3Si
    Purity:97%
    Color and Shape:Straw Liquid
    Molecular weight:275.72

    Ref: 3H-SID2663.0

    1kg
    To inquire
    25g
    To inquire
    2kg
    To inquire
    100g
    To inquire
  • 2,4,6,8-Tetramethylcyclotetrasiloxane

    CAS:
    Formula:C4H16O4Si4
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:240.51

    Ref: 3B-T2076

    5g
    29.00€
    25g
    53.00€
    100g
    168.00€
  • 1,1,1,5,5,5-Hexamethyl-3-[(trimethylsilyl)oxy]-3-vinyltrisiloxane

    CAS:
    Formula:C11H30O3Si4
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:322.70

    Ref: 3B-H1613

    5ml
    66.00€
    25ml
    185.00€
  • Trichloro(3-phenylpropyl)silane

    CAS:
    Formula:C9H11Cl3Si
    Purity:97%
    Color and Shape:Liquid
    Molecular weight:253.6281

    Ref: IN-DA003V0J

    1g
    83.00€
    5g
    182.00€
    25g
    327.00€
    250mg
    43.00€
  • Methoxy(dimethyl)octadecylsilane

    CAS:
    Formula:C21H46OSi
    Purity:>90.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:342.68

    Ref: 3B-M3011

    5ml
    42.00€
    25ml
    124.00€
  • (30-35% TRIETHOXYSILYLETHYL)ETHYLENE-(35-40% 1,4-BUTADIENE)-(25-30% STYRENE) terpolymer, 50% in toluene


    (30-35% Triethoxysilylethyl)ethylene-(35-40% 1,4-butadiene)-(25-30% styrene) terpolymer; (vinyltriethoxysilane)-(1,2-butadiene)-(styrene) terpolymer Multi-functional polymeric trialkoxy silaneHydrophobic modified polybutadiene50% in tolueneViscosity: 20-30 cSt
    Color and Shape:Pale Yellow Amber Liquid
    Molecular weight:4500-5500

    Ref: 3H-SSP-255

    100g
    To inquire
  • TRIS(3-TRIMETHOXYSILYLPROPYL)ISOCYANURATE, tech

    CAS:
    Tris(3-trimethoxysilylpropyl)isocyanurate; 1,3,5-tris[3-(trimethoxysilyl)propyl]-1,3,5-triazine-2,4,6(1h,3h,5h)-trione Masked isocyanate functional trialkoxy silaneViscosity: 150-350 cStCoupling agent for polyimides to silicon metalAdhesion promoter for hotmelt adhesivesForms periodic mesoporous silicas
    Formula:C21H45N3O12Si3
    Purity:95% functional actives (contains analogous compounds)
    Color and Shape:Straw Liquid
    Molecular weight:615.86

    Ref: 3H-SIT8717.0

    2kg
    To inquire
    18kg
    To inquire
    235kg
    To inquire
  • 3-Chloropropyldimethoxymethylsilane

    CAS:
    Formula:C6H15ClO2Si
    Purity:>95.0%(GC)
    Color and Shape:Colorless to Light yellow clear liquid
    Molecular weight:182.72

    Ref: 3B-C1168

    5g
    45.00€
    25g
    116.00€
  • Ethylenedithiobis(trimethylsilane) [Protecting Reagent for Aldehydes and Ketones]

    CAS:
    Formula:C8H22S2Si2
    Purity:>97.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:238.55

    Ref: 3B-E0479

    5g
    161.00€
  • Diethoxydiphenylsilane

    CAS:
    Formula:C16H20O2Si
    Purity:>98.0%(GC)
    Color and Shape:Colorless to Almost colorless clear liquid
    Molecular weight:272.42

    Ref: 3B-D3067

    25g
    69.00€
    100g
    196.00€
  • Benzene, 1,4-bis(trimethylsilyl)-

    CAS:
    Formula:C12H22Si2
    Purity:95%
    Color and Shape:Solid
    Molecular weight:222.4741

    Ref: IN-DA000ZSX

    1g
    25.00€
    5g
    29.00€
    10g
    36.00€
    25g
    58.00€
    100g
    141.00€
  • N-(6-AMINOHEXYL)AMINOMETHYLTRIETHOXYSILANE, 92%

    CAS:
    Diamino 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. N-(6-Aminohexyl)aminomethyltriethoxysilane; N-[6-Triethoxysilyl)methyl]hexamethylethylenediamine Primary amine and an internal secondary amine coupling agent for UV cure and epoxy systemsUsed in microparticle surface modification
    Formula:C13H32N2O3Si
    Purity:92%
    Color and Shape:Straw Liquid
    Molecular weight:292.49

    Ref: 3H-SIA0592.6

    25g
    To inquire
    100g
    To inquire