CAS 694-53-1
:Fenilsilano
Descrição:
Fenilsilano, com o número CAS 694-53-1, é um composto organossilícico caracterizado pela presença de um grupo fenila ligado a um átomo de silício. Geralmente aparece como um líquido incolor a amarelo pálido com um odor distinto. Este composto é conhecido por sua baixa viscosidade e volatilidade, tornando-o útil em várias aplicações químicas. Fenilsilano exibe reatividade devido à presença de ligações Si-H, permitindo que participe de reações de hidrossililação e sirva como precursor para polímeros de silicone. Sua estrutura química contribui para sua capacidade de melhorar as propriedades térmicas e mecânicas dos materiais quando usado como aditivo. Além disso, Fenilsilano pode ser utilizado na síntese de outros compostos organossilícicos e em processos de modificação de superfícies. As considerações de segurança incluem manuseá-lo em áreas bem ventiladas e usar equipamentos de proteção individual adequados, pois pode ser inflamável e irritante para a pele e os olhos. No geral, Fenilsilano é um composto versátil com aplicações significativas em ciência dos materiais e síntese orgânica.
Fórmula:C6H8Si
InChI:InChI=1S/C6H8Si/c7-6-4-2-1-3-5-6/h1-5H,7H3
Chave InChI:InChIKey=PARWUHTVGZSQPD-UHFFFAOYSA-N
SMILES:[SiH3]C1=CC=CC=C1
Sinónimos:- Benzene, silyl-
- Fenilsilano
- Monophenylsilane
- Nsc 179699
- Phenylsilan
- Phenylsilane
- Silylbenzene
- Sip 6750.0
- Z 6047
- Silane, phenyl-
- Silane, phenyl-
- Fenylsilan
- Ver mais sinónimos
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7 produtos.
Phenylsilane
CAS:Fórmula:C6H8SiPureza:>96.0%(GC)Cor e Forma:Colorless to Almost colorless clear liquidPeso molecular:108.22Phenylsilane, 97%
CAS:<p>It is used as a pharmaceutical intermediate. This Thermo Scientific Chemicals brand product was originally part of the Alfa Aesar product portfolio. Some documentation and label information may refer to the legacy brand. The original Alfa Aesar product / item code or SKU reference has not changed as</p>Fórmula:C6H7SiPureza:97%Cor e Forma:Clear colorless, LiquidPeso molecular:107.21Silylbenzene
CAS:SilylbenzeneFórmula:C6H8SiPureza:97%Cor e Forma: clear. colourless liquidPeso molecular:108.21322g/molPhenylsilane
CAS:<p>S13600 - Phenylsilane</p>Fórmula:C6H8SiPureza:97%Cor e Forma:Liquid, Clear LiquidPeso molecular:108.215PHENYLSILANE
CAS:<p>Mono-substituted Silane Reducing Agent<br>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.<br>Trihydridosilane<br>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.<br>Phenylsilane; Silylbenzene<br>ΔHvap: 34.8 kJ/molEmployed in the reduction of esters to ethersReduces α,β-unsaturated ketones to saturated ketones in the presence of tri-n-butyltin hydrideReduces tin amides to tin hydridesUsed in the tin-catalyzed reduction of nitroalkanes to alkanesReduces α-halo ketones in presence of Mo(0)Adds to norbornene with high eeReducing reagent in radical reductionsYields ISiH3 on treatments with HI in presence of AlI3Extensive review of silicon based reducing agents: Larson, G.; Fry, J. L. "Ionic and Organometallic-Catalyzed Organosilane Reductions", Wipf, P., Ed.; Wiley, 2007<br></p>Fórmula:C6H8SiPureza:97%Cor e Forma:LiquidPeso molecular:108.21Phenylsilane
CAS:Produto Controlado<p>Applications Phenylsilane is used as a stoichiometric reductant for direct reductive amination of aldehydes and ketones. It is also used as nerve cell growth substrates in its polymer form.<br> Not a dangerous good if item is equal to or less than 1g/ml and there is less than 100g/ml in the package<br>References Apodaca, Richard., et al.: Org. Lett., 3(11), 1745-1748 (2001); Gikonyo, Barnabas K., et al.: Polym. Chem., 47(1), 222 (2006)<br></p>Fórmula:C6H8SiCor e Forma:NeatPeso molecular:108.21Phenylsilane
CAS:<p>Phenylsilane is a model system for the study of the reaction mechanism of nucleophilic substitution. It is used to investigate the steric interactions between a substrate molecule and an electrophile that are important in determining the rate of reactivity. Phenylsilane has been shown to have antioxidative properties, which may be due to its ability to scavenge reactive oxygen species (ROS), such as hydroxyl radicals, superoxide ions, and hydrogen peroxide. Phenylsilane also has low kinetic energy and can form hydrogen bonds with carbonyl groups and amines. This chemical substance can react with quinoline derivatives, including benzoquinone, which is a toxic by-product of the metabolism of many drugs.</p>Fórmula:C6H8SiPureza:Min. 95%Cor e Forma:Clear LiquidPeso molecular:108.21 g/mol






