Chemistry of the Elements |
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Page 422
... hydrolysis of the various methylchlorosilanes has , accordingly , been much studied . Hydrolysis of Me , SiCl yields trimethylsilanol as a volatile liquid ( bp 99 ° ) ; it is noticeably more acidic than the corresponding Bu'OH and can ...
... hydrolysis of the various methylchlorosilanes has , accordingly , been much studied . Hydrolysis of Me , SiCl yields trimethylsilanol as a volatile liquid ( bp 99 ° ) ; it is noticeably more acidic than the corresponding Bu'OH and can ...
Page 564
... Hydrolysis of a metal phosphide such as AIP or Ca3P2 ; the method is useful even up to the 10 - mole scale and can be made almost quantitative Ca3P2 + 6H2O → 2PH3 + 3Ca ( OH ) 2 2. Pyrolysis of phosphorous acid at 205–210 ° ; under ...
... Hydrolysis of a metal phosphide such as AIP or Ca3P2 ; the method is useful even up to the 10 - mole scale and can be made almost quantitative Ca3P2 + 6H2O → 2PH3 + 3Ca ( OH ) 2 2. Pyrolysis of phosphorous acid at 205–210 ° ; under ...
Page 691
... Hydrolysis of R2ASX yields arsinous acids R2ASOH or their anhydrides ( R2As ) 2O . An alternative route employs a Grignard reagent and As2O3 , e.g. PhMgBr affords ( Ph2As ) 2O . Hydrolysis of RASX2 yields either arsonous acids RAS ( OH ) ...
... Hydrolysis of R2ASX yields arsinous acids R2ASOH or their anhydrides ( R2As ) 2O . An alternative route employs a Grignard reagent and As2O3 , e.g. PhMgBr affords ( Ph2As ) 2O . Hydrolysis of RASX2 yields either arsonous acids RAS ( OH ) ...
Contents
Origin of the Elements Isotopes and Atomic Weights | 1 |
Hydrogen | 38 |
CTEA | 44 |
Copyright | |
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Common terms and phrases
3-centre 4-coordinate acid adducts alkali metals alkenes alkyl alloys ammonia anions aqueous solutions atomic weight beryllium boranes borides boron bridging carbides carbon carboranes catalyst cations chains Chem chemical chemistry cluster cm³ CO₂ colourless complexes compounds coordination covalent crystal structure crystalline density dimer distance electrolysis electron electronegativity elements energy example formation give graphite Grignard reagents groups H bonds H₂ H₂O halides halogens heat hydrated hydrides hydrogen hydrolysis industrial Inorg Inorganic ionic ionization isoelectronic isotopes JCS Chem kJ mol¹ lanthanoids lattice layer ligand liquid lithium million tonnes minerals molecular molecules N₂ nitrogen occurs octahedral orbitals organometallic organometallic chemistry oxidation oxoacids oxygen prepared properties proton reaction reactive reacts readily reagents reducing room temperature salts silicates Silicon similar SiO2 soluble solvent species stable stoichiometry synthesis Table tetrahedral thermal tonnes transition metals trigonal X-ray yields