Additional Properties
Hydrolytic Sensitivity 7: reacts slowly with moisture/water Application Extensive review on the use in silicon-based cross-coupling reactions.1 Reference 1. Denmark, S. E. et al. Organic Reactions, Vol. 75, Denmark, S. E. Ed., John Wiley and Sons, 233, 2011. Safety
Packaging Under Nitrogen 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. Allyltriethoxysilane
; 3-(Triethoxysilyl)-1
-propene; Triethoxyallylsilane
; Propenyltriethoxysil
ane
Dipole moment: 1.79 debye
Vapor pressure, 100 °: 50 mm
Extensive review on the use in silicon-based cross-coupling reactions
Comonomer for polyolefin polymerization
Used in microparticle surface modification
Adhesion promoter for vinyl-addition silicones
Gelest, Inc.
Done
Datasheet
Description
Additional Properties
Hydrolytic Sensitivity 7: reacts slowly with moisture/water Application Extensive review on the use in silicon-based cross-coupling reactions.1 Reference 1. Denmark, S. E. et al. Organic Reactions, Vol. 75, Denmark, S. E. Ed., John Wiley and Sons, 233, 2011. Safety
Packaging Under Nitrogen 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. Allyltriethoxysilane
; 3-(Triethoxysilyl)-1
-propene; Triethoxyallylsilane
; Propenyltriethoxysil
ane
Dipole moment: 1.79 debye
Vapor pressure, 100 °: 50 mm
Extensive review on the use in silicon-based cross-coupling reactions
Comonomer for polyolefin polymerization
Used in microparticle surface modification
Adhesion promoter for vinyl-addition silicones
Additional Properties
Hydrolytic Sensitivity 7: reacts slowly with moisture/water Application Extensive review on the use in silicon-based cross-coupling reactions.1 Reference 1. Denmark, S. E. et al. Organic Reactions, Vol. 75, Denmark, S. E. Ed., John Wiley and Sons, 233, 2011. Safety
Packaging Under Nitrogen 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. Allyltriethoxysilane
; 3-(Triethoxysilyl)-1
-propene; Triethoxyallylsilane
; Propenyltriethoxysil
ane
Dipole moment: 1.79 debye
Vapor pressure, 100 °: 50 mm
Extensive review on the use in silicon-based cross-coupling reactions
Comonomer for polyolefin polymerization
Used in microparticle surface modification
Adhesion promoter for vinyl-addition silicones
Additional Properties
Hydrolytic Sensitivity 7: reacts slowly with moisture/water
Application
Extensive review on the use in silicon-based cross-coupling reactions.1
Reference
1. Denmark, S. E. et al. Organic Reactions, Vol. 75, Denmark, S. E. Ed., John Wiley and Sons, 233, 2011.
Safety
Packaging Under Nitrogen
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.
Allyltriethoxysilane; 3-(Triethoxysilyl)-1-propene; Triethoxyallylsilane; Propenyltriethoxysilane
Dipole moment: 1.79 debye
Vapor pressure, 100 °: 50 mm
Extensive review on the use in silicon-based cross-coupling reactions