
Silicones
Os silicones são uma família versátil de polímeros sintéticos compostos por unidades repetitivas de ligações siloxano (silício-oxigênio), muitas vezes combinadas com carbono e hidrogênio. Esses materiais são renomados por sua excepcional estabilidade térmica, flexibilidade, repelência à água e biocompatibilidade, tornando-os indispensáveis em várias indústrias, como saúde, automotiva, eletrônica, construção e cuidados pessoais. Na CymitQuimica, oferecemos uma ampla gama de silicones de alta qualidade, incluindo fluidos, elastômeros, resinas e géis, todos rigorosamente testados quanto à pureza e desempenho. Nossos produtos de silicone são projetados para atender às rigorosas demandas de aplicações de pesquisa e industriais, fornecendo excelentes propriedades mecânicas e químicas. Ao fornecer silicones de primeira linha, apoiamos pesquisadores e profissionais da indústria no desenvolvimento de soluções inovadoras e materiais avançados, impulsionando o progresso e a eficiência em numerosos campos tecnológicos e industriais.
Subcategorias de "Silicones"
Produtos da "Silicones"
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SILANOL TERMINATED POLYDIMETHYLSILOXANE, 1,000 cSt
CAS:DMS-S31: Silanol Terminated PDMS, 1,000 cSt (Telechelic Functional Fluid) Terminal silanol groups render polydimethylsiloxanes susceptible to condensation under both mild acid and base conditions. They are intermediates for most room temperature vulcanizeable (RTV) condensation cure silicones. The reactivity of silanol fluids is utilized in applications other than RTVs. Low viscosity silanol fluids are employed as filler treatments and structure control additives in silicone rubber compounding. Intermediate viscosity (1,000-10,000 cSt) fluids can be applied to textiles as durable fabric softeners. High viscosity silanol terminated fluids form the matrix component in tackifiers and pressure sensitive adhesives. DMS-S31 Properties Viscosity: 1,000 cStMolecular Weight: 26,000 g/molWt.% OH: 0.1OH (eq/kg): 0.055-0.060Cor e Forma:LiquidPeso molecular:26000.0VINYL TERMINATED POLYDIMETHYLSILOXANE, 5,000 cSt
CAS:DMS-V35: Vinyl Terminated PDMS, 5,000 cSt (Telechelic Functional Fluid) Vinyl terminated polymers are most often employed in 2-part addition cure silicone elastomers. DMS-V35 Properties Viscosity: 5,000 cStMolecular Weight: 49,500 g/molWt.% Vinyl: 0.10-0.13Vinyl (eq/kg): 0.04-0.05Cor e Forma:LiquidPeso molecular:49500.0DIPHENYLSILOXANE-DIMETHYLSILOXANE COPOLYMER, 100-125 cSt
CAS:Cor e Forma:LiquidPeso molecular:2800-3200(6-7% AMINOPROPYLMETHYLSILOXANE) - DIMETHYLSILOXANE COPOLYMER, 1,800-2,200 cSt
CAS:Cor e Forma:Colorless To Pale Yellow LiquidPeso molecular:50000.0POLYDIMETHYLSILOXANE, TRIMETHYLSILOXY TERMINATED, 300,000 cSt
CAS:Cor e Forma:LiquidPeso molecular:204000.0Ref: 3H-DMS-T53
Produto descontinuadoMETHACRYLOXYPROPYL TERMINATED POLYDIMETHYLSILOXANE, 4-6 cSt
CAS:DMS-R05: Methacryloxypropyl Terminated PDMS, 4-6 cSt (Telechelic Functional Fluid) Methacrylate and Acrylate functional siloxanes undergo the same reactions generally associated with methacrylates and acrylates, the most conspicuous being radical induced polymerization. Unlike vinylsiloxanes which are sluggish compared to their organic counterparts, methacrylate and acrylate siloxanes have similar reactivity to their organic counterparts. The principal applications of methacrylate functional siloxanes are as modifiers to organic systems. Upon radical induced polymerization, methacryloxypropyl terminated siloxanes by themselves only increase in viscosity. Copolymers with greater than 5 mole % methacrylate substitution crosslink to give non-flowable resins. Acrylate functional siloxanes cure greater than ten times as fast methacrylate functional siloxanes on exposure to UV in the presence of a photoinitiator such as ethylbenzoin. Oxygen is an inhibitor for methacrylate polymerization in general. The high oxygen permeability of siloxanes usually makes it necessary to blanket these materials with nitrogen or argon in order to obtain reasonable cures. DMS-R05 Properties Viscosity: 4-6 cStMolecular Weight: 380-550 g/molRefractive Index: 1.448Cor e Forma:Pale Yellow LiquidPeso molecular:380-550SILANOL TERMINATED (14-18% DIPHENYLSILOXANE) - DIMETHYLSILOXANE COPOLYMER, 50-60 cSt
CAS:Cor e Forma:LiquidPeso molecular:900-1000POLY(PHENYL-PROPYLSILSESQUIOXANE), 70% PHENYL, 30% PROPYL
CAS:Cor e Forma:Clear White SolidPeso molecular:1500-1800[4-6% (METHACRYLOXYPROPYL)METHYLSILOXANE] - DIMETHYLSILOXANE COPOLYMER, 8,000-10,000 cSt
CAS:Cor e Forma:LiquidMONODISPERSE HYDRIDE TERMINATED POLYDIMETHYLSILOXANE, 500 cSt
CAS:Cor e Forma:LiquidPeso molecular:17200.0DIMETHYLSILOXANE-[65-70%(60% PROPYLENE OXIDE/40% ETHYLENE OXIDE)] BLOCK COPOLYMER, 1,800 cSt
CAS:Cor e Forma:Pale Yellow LiquidPeso molecular:20000.0HYDRIDE TERMINATED POLYDIMETHYLSILOXANE, 100 cSt
CAS:DMS-H21: Hydride Terminated PDMS, 100 cSt (Telechelic Functional Fluid) Hydride terminated silicones are chain extenders for vinyl-addition silicones, enabling low-viscosity, high elongation formulations. They are also intermediates for functionally terminated silicones. DMS-H21 Properties Viscosity: 100 cStMolecular Weight: 4,000-5,000 g/molWt.% Hydride: 0.04Cor e Forma:LiquidPeso molecular:4000-5000CHLORINE TERMINATED POLYDIMETHYLSILOXANE, 500-800 cSt
CAS:Cor e Forma:LiquidPeso molecular:15000-20000MONODISPERSE HYDRIDE TERMINATED POLYDIMETHYLSILOXANE, 100 cSt
CAS:Cor e Forma:LiquidPeso molecular:5500.0[7-9% (METHACRYLOXYPROPYL)METHYLSILOXANE] - DIMETHYLSILOXANE COPOLYMER, 2,000-3,000 cSt
CAS:Cor e Forma:LiquidSILANOL TERMINATED POLYDIMETHYLSILOXANE, 50,000 cSt
CAS:DMS-S45: Silanol Terminated PDMS, 50,000 cSt (Telechelic Functional Fluid) Terminal silanol groups render polydimethylsiloxanes susceptible to condensation under both mild acid and base conditions. They are intermediates for most room temperature vulcanizeable (RTV) condensation cure silicones. The reactivity of silanol fluids is utilized in applications other than RTVs. Low viscosity silanol fluids are employed as filler treatments and structure control additives in silicone rubber compounding. Intermediate viscosity (1,000-10,000 cSt) fluids can be applied to textiles as durable fabric softeners. High viscosity silanol terminated fluids form the matrix component in tackifiers and pressure sensitive adhesives. DMS-S45 Properties Viscosity: 50,000 cStMolecular Weight: 110,000 g/molWt.% OH: 0.03OH (eq/kg): 0.015-0.017Cor e Forma:LiquidPeso molecular:110000.0PHENYLMETHYLSILOXANE-DIMETHYLSILOXANE COPOLYMER, 30,000 cSt
CAS:Cor e Forma:LiquidPeso molecular:40000-50000(CARBOXYDECYL) TERMINATED POLYDIMETHYLSILOXANE, 15-30 cSt
CAS:Cor e Forma:Straw Amber LiquidPeso molecular:1000.0monoMETHACRYLOXYPROPYL FUNCTIONAL POLYTRIFLUOROPROPYLMETHYLSILOXANE, symmetric, 50-70 cSt
CAS:Cor e Forma:Deep Straw LiquidPeso molecular:800-1000monoAMINOPROPYL TERMINATED POLYDIMETHYLSILOXANE, asymmetric, 18-25 cSt
Cor e Forma:LiquidPeso molecular:2000.0DODECYLMETHYLSILOXANE-HYDROXYPOLYALKYLENEOXYPROPYL METHYLSILOXANE COPOLYMER, 1,000-4,000 cSt
CAS:Cor e Forma:Clear To Amber LiquidPeso molecular:1800-2000monoVINYL FUNCTIONAL POLYDIMETHYLSILOXANE, METHOXY(DIETHYLENEOXIDE)PROPYL TERMINATED, symmetric, 40-60 cSt
CAS:Polar Endcapped Symmetric Macromers Macromers with polar terminations can be used as additives into more polar organic resins to add silicone characteristics with reduced likelihood of phase separation. Poly(dimethylsiloxane), monotriethoxysilylethyl terminated; MonoVinyl Functional PolyDimethylsiloxanes, methoxy(diethyleneoxide)propyl terminated - symmetric Viscosity: 40-60 cStRefractive Index: 1.412Molecular Weight: 5000 g/molCor e Forma:LiquidPeso molecular:5000.0monoHYDRIDE TERMINATED POLYDIMETHYLSILOXANE, asymmetric, 80-120 cSt
CAS:Cor e Forma:LiquidPeso molecular:4500-5000[4-6% (3-ACRLOXY-2-HYDROXYPROPOXYPROPYL)METHYLSILOXANE]-DIMETHYLSILOXANE COPOLYMER, 500-1,500 cSt
Cor e Forma:Amber Green Brown LiquidPeso molecular:7500-8500monoMETHACRYLOXYPROPYL FUNCTIONAL POLYDIMETHYLSILOXANE, symmetric, 7-9 cSt
CAS:Cor e Forma:Deep Straw LiquidPeso molecular:800-1000monoVINYL FUNCTIONAL POLYDIMETHYLSILOXANE, TETRAHYDROFURFURYLOXYPROPYL TERMINATED symmetric, 30-40 cSt
CAS:Cor e Forma:LiquidPeso molecular:2000-3000POLYDIMETHYLSILOXANE, TRIMETHYLSILOXY TERMINATED, 1.5 cSt
CAS:Cor e Forma:Colourless LiquidPeso molecular:340.0(25-35% NONAFLUOROHEXYLMETHYLSILOXANE) (65-75% DIMETHYLSILOXANE) COPOLYMER, 8-12 cSt
CAS:Cor e Forma:Colourless LiquidPeso molecular:1000.0POLYDIMETHYLSILOXANE, TRIMETHYLSILOXY TERMINATED, 100,000 cSt
CAS:Cor e Forma:LiquidPeso molecular:139000.0CARBINOL (HYDROXYL) TERMINATED POLYDIMETHYLSILOXANE, 30-50 cSt
CAS:Cor e Forma:LiquidPeso molecular:1000.0POLYDIMETHYLSILOXANE, TRIMETHYLSILOXY TERMINATED, 1,000,000 cSt
CAS:Cor e Forma:LiquidPeso molecular:308000.0METHACRYLOXYPROPYL TERMINATED POLYDIMETHYLSILOXANE, 1,000 cSt
CAS:DMS-R31: Methacryloxypropyl Terminated PDMS, 1,000 cSt (Telechelic Functional Fluid) Methacrylate and Acrylate functional siloxanes undergo the same reactions generally associated with methacrylates and acrylates, the most conspicuous being radical induced polymerization. Unlike vinylsiloxanes which are sluggish compared to their organic counterparts, methacrylate and acrylate siloxanes have similar reactivity to their organic counterparts. The principal applications of methacrylate functional siloxanes are as modifiers to organic systems. Upon radical induced polymerization, methacryloxypropyl terminated siloxanes by themselves only increase in viscosity. Copolymers with greater than 5 mole % methacrylate substitution crosslink to give non-flowable resins. Acrylate functional siloxanes cure greater than ten times as fast methacrylate functional siloxanes on exposure to UV in the presence of a photoinitiator such as ethylbenzoin. Oxygen is an inhibitor for methacrylate polymerization in general. The high oxygen permeability of siloxanes usually makes it necessary to blanket these materials with nitrogen or argon in order to obtain reasonable cures. DMS-R31 Properties Viscosity: 1,000 cStMolecular Weight: 25,000 g/molRefractive Index: 1.404Cor e Forma:LiquidPeso molecular:25000.0POLYDIMETHYLSILOXANE, TRIMETHYLSILOXY TERMINATED, 5 cSt
CAS:Cor e Forma:Colourless LiquidPeso molecular:770.0monoMETHACRYLOXYPROPYL FUNCTIONAL POLYDIMETHYLSILOXANE, symmetric, 7-9 cSt
CAS:Cor e Forma:Deep Straw LiquidPOLYDIMETHYLSILOXANE, TRIMETHYLSILOXY TERMINATED, 0.65 cSt
CAS:Cor e Forma:LiquidPeso molecular:162.0Ref: 3H-DMS-T00
Produto descontinuadoVINYL TERMINATED (3.0-3.5% DIPHENYLSILOXANE)-DIMETHYLSILOXANE COPOLYMER, 60,000 cSt
CAS:PDV-0346: Vinyl Terminated Diphenylsiloxane-Dimethylsiloxane Copolymer (Telechelic Functional Fluid) These fluids are most often employed in 2-part addition cure silicone elastomers where special thermal or optical properties are required. PDV-0346 Properties Viscosity: 60,000 cStMolecular Weight: 78,000 g/molVinyl (eq/kg): 0.017-0.021Refractive Index: 1.420Cor e Forma:LiquidPeso molecular:78000.0VINYL TERMINATED POLYDIMETHYLSILOXANE, Reduced Volatility, 500 cSt
CAS:DMS-V25R: Vinyl Terminated PDMS, Reduced Volatility, 500 cSt (Telechelic Functional Fluid) Vinyl terminated polymers are most often employed in 2-part addition cure silicone elastomers. DMS-V25R Properties Viscosity: 500 cStMolecular Weight: 17,200 g/molWt.% Vinyl: 0.37-0.43Vinyl (eq/kg): 0.11-0.13Total Volatiles, 4 hrs@ 150°C: 0.2% maximumCor e Forma:LiquidPeso molecular:17200.0SUCCINIC ANHYDRIDE TERMINATED POLYDIMETHYLSILOXANE, 75-100 cSt
CAS:Cor e Forma:LiquidPeso molecular:600-800AMINOPROPYL TERMINATED POLYDIMETHYLSILOXANE, 1,800-2,200 cSt
CAS:Cor e Forma:LiquidPeso molecular:30000.0HYDROXYALKYL TERMINATED POLY(PROPYLENEOXY)-POLYDIMETHYLSILOXANE BLOCK COPOLYMER, 200-300 cSt
CAS:Cor e Forma:Straw Amber LiquidPeso molecular:2500-3200POLYMETHYLHYDROSILOXANE, TRIMETHYLSILYL TERMINATED, 30-45 cSt
CAS:Siloxane-Based 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. Pendant Functional Fluid; polyMethylHydrosiloxanes, TMS Terminated MethylHydrosiloxane homopolymers are used as water-proofing agents, reducing agents and as components in some foamed silicone systems. Poly(methylhydrosiloxane); Methyl hydrogen siloxane; Polysiloxanes, methyl hydrogen; Siloxanes and silicones, methyl hydrogen Viscosity: 30-45 cStMolecular Weight: 2,100-2,400 g/molMol% Hydride: 100Reduces lactones to lactolsReduces aldehydes, ketones, esters, lactones, triglycerides and epoxides to alcohols with zinc hydride catalysisWith titanium tetraisopropoxide catalysis carries out reductive amination of ketones and aldehydes and the reduction of acids or esters to 1° alcoholsWith TBAF catalysis selectively reduces aldehydes over ketonesUsed to generate tri-n-butyltin hydride ‘in-situ’ and in a one-pot hydrostannylation/Stille coupling sequenceReduces esters to alcoholsExtensive review of silicon based reducing agents: Larson, G.; Fry, J. L. "Ionic and Organometallic-Catalyzed Organosilane Reductions", Wipf, P., Ed.; Wiley, 2007Cor e Forma:LiquidPeso molecular:2100-2400(3-METHACRYLOXY-2-HYDROXYPROPOXYPROPYL)METHYL BIS(TRIMETHYLSILOXY)SILANE, 96%
CAS:Fórmula:C17H38O6Si3Pureza:96%Cor e Forma:Colourless LiquidPeso molecular:422.74POLYDIMETHYLSILOXANE, TRIMETHYLSILOXY TERMINATED, 1,000 cSt
CAS:Cor e Forma:LiquidPeso molecular:28000.0(4-6% METHYLHYDROSILOXANE) - DIMETHYLSILOXANE COPOLYMER, TRIMETHYLSILOXANE TERMINATED, 750-1,000 cSt
CAS:Siloxane-Based 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. Pendant Functional Fluid; MethylHydrosiloxane-Dimethylsiloxane Copolymer, TMS Terminated MethylHydrosiloxane copolymers are the primary cross linkers for 2-part vinyl-addition silicones and intermediates for functional copolymers. Hydrogen dimethicone; Dimethylhydropolysiloxane; Dimethicone/methicone copolymer; Polysiloxanes dimethyl methyl hydrogen, Hydride functional polydimethylsiloxane; Siloxanes and silicones, dimethyl, methyl hydrogen Viscosity: 750-1,000 cStMolecular Weight: 20,000-25,000 g/molMol% Hydride: 4-6Potential reducing agents in the mode of HMS-991 or HMS-994Extensive review of silicon based reducing agents: Larson, G.; Fry, J. L. "Ionic and Organometallic-Catalyzed Organosilane Reductions", Wipf, P., Ed.; Wiley, 2007Cor e Forma:LiquidPeso molecular:20000-25000[2-3% (EPOXYCYCLOHEXYLETHYL)METHYLSILOXANE] (10-15% METHOXYPOLYALKYLENEOXYMETHYLSILOXANE) DIMETHYLSILOXANE TERPOLYMER, 4,000-5,000 cSt
CAS:Cor e Forma:Straw Amber LiquidPeso molecular:25000-36000(25-35% METHYLHYDROSILOXANE) - DIMETHYLSILOXANE COPOLYMER, TRIMETHYLSILOXANE TERMINATED, 25-35 cSt
CAS:Siloxane-Based 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. Pendant Functional Fluid; MethylHydrosiloxane-Dimethylsiloxane Copolymer, TMS Terminated MethylHydrosiloxane copolymers are the primary cross linkers for 2-part vinyl-addition silicones and intermediates for functional copolymers. Hydrogen dimethicone; Dimethylhydropolysiloxane; Dimethicone/methicone copolymer; Polysiloxanes dimethyl methyl hydrogen, Hydride functional polydimethylsiloxane; Siloxanes and silicones, dimethyl, methyl hydrogen Viscosity: 25-35 cStMolecular Weight: 1,900-2,000 g/molMol% Hydride: 25-35Reduced volatility grade available, HMS-301Potential reducing agents in the mode of HMS-991 or HMS-999Extensive review of silicon based reducing agents: Larson, G.; Fry, J. L. "Ionic and Organometallic-Catalyzed Organosilane Reductions", Wipf, P., Ed.; Wiley, 2007Cor e Forma:LiquidPeso molecular:1900-2000AMINOPROPYL TERMINATED POLYDIMETHYLSILOXANE, 4,000-6,000 cSt
CAS:Cor e Forma:LiquidPeso molecular:50000.0HYDRIDE TERMINATED POLYDIMETHYLSILOXANE, 7-10 cSt
CAS:DMS-H11: Hydride Terminated PDMS, 7-10 cSt (Telechelic Functional Fluid) Hydride terminated silicones are chain extenders for vinyl-addition silicones, enabling low-viscosity, high elongation formulations. They are also intermediates for functionally terminated silicones. DMS-H11 Properties Viscosity: 7-10 cStMolecular Weight: 1,000-1,100 g/molWt.% Hydride: 0.2Cor e Forma:LiquidPeso molecular:1000 - 1100POLYDIMETHYLSILOXANE, TRIMETHYLSILOXY TERMINATED, 3 cSt
CAS:Cor e Forma:Colourless LiquidPeso molecular:550.0Ref: 3H-DMS-T03
Produto descontinuadomonoAMINOPROPYL TERMINATED POLYDIMETHYLSILOXANE, asymmetric, 8-12 cSt
Cor e Forma:LiquidPeso molecular:800-1200DIMETHYLSILOXANE-(80-85% ETHYLENE OXIDE) BLOCK COPOLYMER, 100-120 cSt
CAS:Fórmula:CH3O(CH2CH2O)6-9(CH2)3(CH3)[OSi(CH3)3]2SiCor e Forma:Pale Yellow LiquidPeso molecular:4400.0monoHYDRIDE TERMINATED POLYDIMETHYLSILOXANE, asymmetric, 5-8 cSt
CAS:Cor e Forma:LiquidPeso molecular:800-900POLYDIMETHYLSILOXANE, TRIMETHYLSILOXY TERMINATED, 600,000 cSt
CAS:Cor e Forma:LiquidPeso molecular:260000.0Ref: 3H-DMS-T56
Produto descontinuado(7-9% METHYLHYDROSILOXANE) - DIMETHYLSILOXANE COPOLYMER, TRIMETHYLSILOXANE TERMINATED, 110-150 cSt
CAS:Siloxane-Based 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. Pendant Functional Fluid; MethylHydrosiloxane-Dimethylsiloxane Copolymer, TMS Terminated MethylHydrosiloxane copolymers are the primary cross linkers for 2-part vinyl-addition silicones and intermediates for functional copolymers. Hydrogen dimethicone; Dimethylhydropolysiloxane; Dimethicone/methicone copolymer; Polysiloxanes dimethyl methyl hydrogen, Hydride functional polydimethylsiloxane; Siloxanes and silicones, dimethyl, methyl hydrogen Viscosity: 110-150 cStMolecular Weight: 5,500-6,500 g/molMol% Hydride: 7-9Potential reducing agents in the mode of HMS-991 or HMS-997Extensive review of silicon based reducing agents: Larson, G.; Fry, J. L. "Ionic and Organometallic-Catalyzed Organosilane Reductions", Wipf, P., Ed.; Wiley, 2007Cor e Forma:LiquidPeso molecular:5500 - 6500monoPHENYL FUNCTIONAL TRIS(EPOXY TERMINATED POLYDIMETHYLSILOXANE), 30-35 cSt
CAS:Cor e Forma:Straw LiquidPeso molecular:500-750POLYDIETHYLSILOXANE, TRIETHYLSILOXY TERMINATED, 200-400 cSt
CAS:Cor e Forma:LiquidPeso molecular:1300-2000POLYDIMETHYLSILOXANE, TRIMETHYLSILOXY TERMINATED, 2,500,000 cSt
CAS:Cor e Forma:LiquidPeso molecular:423000.0monoVINYL TERMINATED POLYDIMETHYLSILOXANE, asymmetric, 500 cST
CAS:MCR-V25: monoVinyl Terminated Polydimethylsiloxane (Monofunctional Fluid) Mono-vinyl functional PDMS macromers are monodisperse (low PDI) fluids that can be used as components in silicone gels and modifiers in release coatings. MCR-V25 Properties Viscosity: 400-600 cStMolecular Weight: 15,000-20,000 g/molRefractive Index: 1.403Cor e Forma:LiquidPeso molecular:15000-20000VINYL TERMINATED (4-6% DIPHENYLSILOXANE)-DIMETHYLSILOXANE COPOLYMER, 10,000 cSt
CAS:PDV-0541: Vinyl Terminated Diphenylsiloxane-Dimethylsiloxane Copolymer (Telechelic Functional Fluid) These fluids are most often employed in 2-part addition cure silicone elastomers where special thermal or optical properties are required. PDV-0541 Properties Viscosity: 10,000 cStMolecular Weight: 60,000 g/molVinyl (eq/kg): 0.027-0.038Refractive Index: 1.430Cor e Forma:LiquidPeso molecular:60000.0POLYDIMETHYLSILOXANE, TRIMETHYLSILOXY TERMINATED, 60,000 cSt
CAS:Cor e Forma:LiquidPeso molecular:116500.0Ref: 3H-DMS-T46
Produto descontinuadoCARBINOL (HYDROXYL) TERMINATED POLYDIMETHYLSILOXANE, 400-800 cSt
CAS:Cor e Forma:Straw Amber LiquidPeso molecular:3500-4500SILANOL TERMINATED POLYDIMETHYLSILOXANE,18,000 cSt
CAS:DMS-S42: Silanol Terminated PDMS, 18,000 cSt (Telechelic Functional Fluid) Terminal silanol groups render polydimethylsiloxanes susceptible to condensation under both mild acid and base conditions. They are intermediates for most room temperature vulcanizeable (RTV) condensation cure silicones. The reactivity of silanol fluids is utilized in applications other than RTVs. Low viscosity silanol fluids are employed as filler treatments and structure control additives in silicone rubber compounding. Intermediate viscosity (1,000-10,000 cSt) fluids can be applied to textiles as durable fabric softeners. High viscosity silanol terminated fluids form the matrix component in tackifiers and pressure sensitive adhesives. DMS-S42 Properties Viscosity: 18,000 cStMolecular Weight: 77,000 g/molWt.% OH: 0.4OH (eq/kg): 0.023-0.025Cor e Forma:LiquidPeso molecular:77000.0PHENYLMETHYLSILOXANE OLIGOMER
CAS:Thermal Silicone Fluid High phenyl content fluids are utilized as heat-exchange fluids, dielectric coolants, impregnants for sintered metal bearing, and base oils for high temperature fluids. Low phenyl content fluids are utilized at lower temperatures than high phenylsilicones and find extended temperature service applications as lubricating oils for critical devices such as timers and systems involving rubber, plastic and aluminum mating surfaces. 1,1,5,5-Tetraphenyl-1,3,3,5-tetramethyltrisiloxane PhenylMethylsiloxane Oligomers - Diffusion FluidsViscosity, 25 °C: 35-40 cStViscosity, 99 °C:Pour-point, °C: -35Specific gravity: 1.07Refractive index: 1.556Surface tension: 37.3Molecular Weight: 485 g/molCor e Forma:LiquidPeso molecular:485.0(25-30% METHYLHYDROSILOXANE) - DIMETHYLSILOXANE COPOLYMER, HYDRIDE TERMINATED, 24-60 cSt
CAS:Cor e Forma:LiquidPeso molecular:2000-2600HYDRIDE TERMINATED POLYDIMETHYLSILOXANE, 4-6 cSt
CAS:DMS-H05: Hydride Terminated PDMS, 4-6 cSt (Telechelic Functional Fluid) Hydride terminated silicones are chain extenders for vinyl-addition silicones, enabling low-viscosity, high elongation formulations. They are also intermediates for functionally terminated silicones. DMS-H05 Properties Viscosity: 4-6 cStMolecular Weight: 600-700 g/molWt.% Hydride: 0.3Cor e Forma:LiquidPeso molecular:600-700(15-18% METHYLHYDROSILOXANE) - DIMETHYLSILOXANE COPOLYMER, TRIMETHYLSILOXANE TERMINATED, 25-35 cSt
CAS:Siloxane-Based 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. Pendant Functional Fluid; MethylHydrosiloxane-Dimethylsiloxane Copolymer, TMS Terminated MethylHydrosiloxane copolymers are the primary cross linkers for 2-part vinyl-addition silicones and intermediates for functional copolymers. Hydrogen dimethicone; Dimethylhydropolysiloxane; Dimethicone/methicone copolymer; Polysiloxanes dimethyl methyl hydrogen, Hydride functional polydimethylsiloxane; Siloxanes and silicones, dimethyl, methyl hydrogen Viscosity: 25-35 cStMolecular Weight: 1,900-2,000 g/molMol% Hydride: 15-18Potential reducing agents in the mode of HMS-991 or HMS-998Extensive review of silicon based reducing agents: Larson, G.; Fry, J. L. "Ionic and Organometallic-Catalyzed Organosilane Reductions", Wipf, P., Ed.; Wiley, 2007Cor e Forma:LiquidPeso molecular:1900-2000PHENYLMETHYLSILOXANE-DIMETHYLSILOXANE COPOLYMER, 125 cSt
CAS:Cor e Forma:LiquidPeso molecular:2200-2200HYDRIDE TERMINATED POLYDIMETHYLSILOXANE, 1,000 cSt
CAS:DMS-H31: Hydride Terminated PDMS, 1,000 cSt (Telechelic Functional Fluid) Hydride terminated silicones are chain extenders for vinyl-addition silicones, enabling low-viscosity, high elongation formulations. They are also intermediates for functionally terminated silicones. DMS-H31 Properties Viscosity: 1,000 cStMolecular Weight: 28,000 g/molWt.% Hydride: 0.007Cor e Forma:LiquidPeso molecular:28000.0monoDICARBINOL TERMINATED POLYDIMETHYLSILOXANE, asymmetric, 50-60 cSt
CAS:Cor e Forma:LiquidPeso molecular:1000.0AMINOPROPYL TERMINATED POLYDIMETHYLSILOXANE, 900-1,100 cSt
CAS:Cor e Forma:LiquidPeso molecular:25000.0SILANOL TERMINATED POLYDIMETHYLSILOXANE, 3,500 cSt
CAS:DMS-S33: Silanol Terminated PDMS, 3,500 cSt (Telechelic Functional Fluid) Terminal silanol groups render polydimethylsiloxanes susceptible to condensation under both mild acid and base conditions. They are intermediates for most room temperature vulcanizeable (RTV) condensation cure silicones. The reactivity of silanol fluids is utilized in applications other than RTVs. Low viscosity silanol fluids are employed as filler treatments and structure control additives in silicone rubber compounding. Intermediate viscosity (1,000-10,000 cSt) fluids can be applied to textiles as durable fabric softeners. High viscosity silanol terminated fluids form the matrix component in tackifiers and pressure sensitive adhesives. DMS-S33 Properties Viscosity: 3,500 cStMolecular Weight: 43,500 g/molWt.% OH: 0.8OH (eq/kg): 0.045-0.050Cor e Forma:LiquidPeso molecular:43500.0CARBINOL (HYDROXYL) TERMINATED POLYDIMETHYLSILOXANE
CAS:Cor e Forma:White SolidPeso molecular:7000-8000monoCARBOXYDECYL TERMINATED POLYDIMETHYLSILOXANE, asymmetric, 20 cSt
Cor e Forma:LiquidPeso molecular:1500.0Ref: 3H-DMS-T02
Produto descontinuadomonoMETHACRYLOXYPROPYL TERMINATED POLYDIMETHYLSILOXANE, asymmetric, 10 cSt
CAS:Cor e Forma:Deep Straw LiquidPeso molecular:1000.0AMINOPROPYL TERMINATED POLYDIMETHYLSILOXANE, 100-120 cSt
CAS:Cor e Forma:Straw LiquidPeso molecular:5000.0EPOXYCYCLOHEXYLETHYL TERMINATED POLYDIMETHYLSILOXANE, 60-80 cSt
CAS:Cor e Forma:LiquidPeso molecular:3200-3600POLYDIMETHYLSILOXANE, TRIMETHYLSILOXY TERMINATED, Reduced Volatility, 1,000 cSt
CAS:Cor e Forma:LiquidPeso molecular:28000.0POLYMETHYLHYDROSILOXANE, TRIMETHYLSILYL TERMINATED, 15-25 cSt
CAS:Siloxane-Based 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. Pendant Functional Fluid; polyMethylHydrosiloxanes, TMS Terminated MethylHydrosiloxane homopolymers are used as water-proofing agents, reducing agents and as components in some foamed silicone systems. Poly(methylhydrosiloxane); Methyl hydrogen siloxane; Polysiloxanes, methyl hydrogen; Siloxanes and silicones, methyl hydrogen Viscosity: 15-25 cStMolecular Weight: 1,400-1,800 g/molMol% Hydride: 100Reduces lactones to lactolsReduces aldehydes, ketones, esters, lactones, triglycerides and epoxides to alcohols with zinc hydride catalysisWith titanium tetraisopropoxide catalysis carries out reductive amination of ketones and aldehydes and the reduction of acids or esters to 1° alcoholsWith TBAF catalysis selectively reduces aldehydes over ketonesUsed to generate tri-n-butyltin hydride ‘in-situ’ and in a one-pot hydrostannylation/Stille coupling sequenceReduces esters to alcoholsExtensive review of silicon based reducing agents: Larson, G.; Fry, J. L. "Ionic and Organometallic-Catalyzed Organosilane Reductions", Wipf, P., Ed.; Wiley, 2007Cor e Forma:LiquidPeso molecular:1400-1800(ACRYLOXYPROPYL)METHYLSILOXANE HOMOPOLYMER, 50-125 cSt
CAS:Cor e Forma:Colorless To Pale Yellow Liquid