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Phenyl Triethoxysilane (Donor A).
Synonym: Triethoxysilylbenzene
Countertype of Evonik CP 0320, Catylen D100, Dynasylan 9265, DowCorning Z-9805, ShinEtsu KBE-103, Wacker P-TRIETHOXY
Chemical Structure
Chemical Structure
Introduction
Organosilanes basic structure is RnSi(OR)4-n, wherein "R" is an alkyl, aryl, or other organofunctional group and "OR" is a methoxy, ethoxy, or acetoxy group.
Phenyl silanes are a group of phenyl-containing silicon compounds.
Typical Physical Properties
Chemical Name: | Phenyltriethoxysilane |
CAS No.: | 780-69-8 |
EINECS No.: | 212-305-8 |
Empirical Formula: | C12H20O3Si |
Molecular Weight: | 240.37 |
Boiling Point: | 233°C [760mmHg] |
Flash Point: | 96°C |
Color and Appearance: | Colorless transparent liquid |
Density [25°C]: | 0.996 |
Refractive Index [25°C]: | 1.4718 |
Purity: | 98% by GC |
Application
DP-811 is used to modify the suface of inorganic fillers such as wollastonite andaluminum trihydroxide. It makes the surface of these inorganic fillers more hydrophobic and thus increases their dispersability in mineral-filled polymers.
DP-811 is especially suited for polymers that are processed at elevated temperatures.
DP-811 reduces the viscosity of the polymer melt.
DP-811 is partially hydrolyzed to form a preproduct that can be further crosslinked using temperature. This pre-hydrolysis is often made in conjunction with alkyl silanes or other organofunctional silanes , silicic acid esters, or even an aqueous silica sol.
DP-811 can be used as a crosslinker in high-temperature silicone elastomers
DP-811 can be used as a stereo-regulator for Ziegler-Natta-catalysts to increase the isotactic index in polypropylene. (A donor)
Packing
Net weight 190Kg steel drum
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