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Silver complexes dioxygen

Codeposition of silver vapor with perfluoroalkyl iodides at -196 °C provides an alternative route to nonsolvated primary perfluoroalkylsilvers [272] Phosphine complexes of trifluaromethylsilver are formed from the reaction of trimethyl-phosphme, silver acetate, and bis(trifluoromethyl)cadmium glyme [755] The per-fluoroalkylsilver compounds react with halogens [270], carbon dioxide [274], allyl halides [270, 274], mineral acids and water [275], and nitrosyl chloride [276] to give the expected products Oxidation with dioxygen gives ketones [270] or acyl halides [270] Sulfur reacts via insertion of sulfur into the carbon-silver bond [270] (equation 188)... [Pg.716]

The gas-phase oxidation of ethylene to ethylene oxide over a supported silver catalyst was discovered in 1933 and is a commercially important industrial process. Using either air or oxygen, the ethylene oxide is produced with 75% selectivity at elevated temperatures (ca. 250 °C). Low yields of epoxides are obtained with propylene and higher alkenes so that other metal-based catalysts are used. A silver-dioxygen complex of ethylene has been implicated as the active reagent.222... [Pg.805]

Phosphine Chalcogenides as Ligands. - The enhanced stability provided by two triphenylphosphine oxide ligands has enabled the first crystal structure analysis of a non-haem-di-iron-dioxygen adduct. Complexes of the bis(phosphine oxide) (213 Z=0) with copper(I) and copper(II), and of the related disulfide (213 Z=S) with gold(I) and silver(I), have been characterised. [Pg.30]


See other pages where Silver complexes dioxygen is mentioned: [Pg.77]    [Pg.120]    [Pg.38]    [Pg.264]    [Pg.362]    [Pg.46]    [Pg.53]    [Pg.17]    [Pg.18]    [Pg.23]    [Pg.46]   
See also in sourсe #XX -- [ Pg.5 , Pg.805 ]




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Dioxygen complexes

Silver complexes

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