CAS NO.694-53-1 Phenylsilane

CAS NO.694-53-1 Phenylsilane

CAS NO.694-53-1 Phenylsilane ΔH vap : 34.8 kJ/mol Employed in the reduction of esters to ethers Reduces α,β-unsaturated ketones to saturated ketones in the presence of tri- n -butyltin hydride Reduces tin amides to tin hydrides Used in the tin-catalyzed reduction of nitroalkanes to alkanes...
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Product Details

CAS NO.694-53-1 Phenylsilane  Basic   information

Product   Name

Phenylsilane

 

Synonyms

Phenylsilane,98%;Phenylsilane, 98% 25ML;Phenylsilane, 98% 5ML;Phenylsilane≥ 98% (GC);PHENYLSILANE;Benzene, silyl-;Fenylsilan;phenyl-silan

 Structure  

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CAS   NO

694-53-1

Appearance

Colorless   and transparent liquid

Assay

98%min

MF:

C6H8Si

MW

108.21

EINECS

211-772-5

Product   Categories

Organosilicon;Self Assembly&Contact Printing;Self-Assembly Materials;SilanesOrganometallic Reagents;Trialkoxysilanes; Chemical Synthesis;Contact Printing;Materials Science;Micro/NanoElectronics;Organometallic Reagents;Self Assembly &;Self-Assembly Materials;Silanes;

Storage  

Shading,   sealed, dry place.

Capacity

1000KG   /month

Package  

In   paper drums /Fluoride drums /iron drums /plastic drums/IBC Tank ,etc.

Shipment method  

By   Sea ,Air ,Courier door to door ,etc.

Loading   Port

China   any port ,Beijing ,Shanghai ,Hong Kong etc.

Application  

As   additive used in advanced functional materials.

 

CAS NO.694-53-1 Phenylsilane


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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.

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