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Recent advances in silver-catalyzed nitrene, carbene, and silylene-transfer reactions

机译:银催化的氮,卡宾和甲硅烷基转移反应的最新进展

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Silver salts are commonly used as Lewis acids in organic synthesis. Silver complexes can also exhibit strong oxidation power due to their high oxidation potentials. This review features the recent development of nitrene, carbene and silylene-transfer reactions catalyzed by silver complexes. Interesting activity was observed in several reactions highlighting the unique redox chemistry of silver. A disilver(I) catalyst was shown to mediate efficient aziridination of simple olefins, intramolecular amidation of saturated C-H bonds and imination of sulfoxides with high regio- and stereoselectivity. Silver compounds also catalyze intermolecular carbene insertion into carbon-halogen bonds, carbon-hydrogen bonds, and aromatic systems. In addition, simple silver salts were found to mediate silylene-transfer reactions to different olefins and alkynes efficiently. Future mechanistic study of these reactions and further exploration of the redox chemistry of silver could lead to more exciting discoveries. ((c) Wiley-VCH Verlag GmbH & Co. KGaA, 69451 Weinheim, Germany, 2006).
机译:银盐通常在有机合成中用作路易斯酸。银配合物由于其高氧化电位也可表现出强氧化能力。这项审查的特点是银络合物催化的氮,卡宾和甲硅烷基转移反应的最新进展。在几个反应中观察到有趣的活性,突出了银独特的氧化还原化学。研究表明,disilver(I)催化剂可介导简单烯烃的高效叠氮化,饱和C-H键的分子内酰胺化以及亚砜的亚氨选择性和高区域选择性和立体选择性。银化合物还催化分子间卡宾插入碳-卤素键,碳-氢键和芳族系统。另外,发现简单的银盐可有效地介导甲硅烷基转移反应至不同的烯烃和炔烃。对这些反应的未来机理研究以及对银氧化还原化学的进一步探索可能会导致更多令人兴奋的发现。 ((c)Wiley-VCH Verlag GmbH&Co.KGaA,69451 Weinheim,德国,2006年)。

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