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Copper-Promoted Functionalization of Organic Molecules: from Biologically Relevant Cu/O2 Model Systems to Organometallic Transformations

机译:有机分子的铜促进的官能化:从生物相关的Cu / O 2 模型系统到有机金属变换

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Copper is one of the most abundant and less toxic transition metals. Nature takes advantage of the bioavailability and rich redox chemistry of Cu to carry out oxygenase and oxidase organic transformations using O_(2) (or H_(2)O_(2)) as oxidant. Inspired by the reactivity of these Cu-dependent metalloenzymes, chemists have developed synthetic protocols to functionalize organic molecules under enviormentally benign conditions. Copper also promotes other transformations usually catalyzed by 4d and 5d transition metals (Pd, Pt, Rh, etc.) such as nitrene insertions or C–C and C–heteroatom coupling reactions. In this review, we summarized the most relevant research in which copper promotes or catalyzes the functionalization of organic molecules, including biological catalysis, bioinspired model systems, and organometallic reactivity. The reaction mechanisms by which these processes take place are discussed in detail.
机译:铜是最丰富且毒性较小的过渡金属之一。 性质利用Cu的生物利用度和富含氧化还原化学,使用O_(2)(或H_(2)O_(2))作为氧化剂进行氧酶和氧化酶有机转化。 灵感来自这些Cu依赖性金属酶的反应性,化学家培养了合成方案,以在环境良态条件下官能化有机分子。 铜还促进通常由4D和5D过渡金属(Pd,Pt,Rh等)催化的其他转化,例如硝化丁烯插入或C-C和C-杂原子偶联反应。 在本综述中,我们总结了最相关的研究,其中铜促进或催化有机分子的官能化,包括生物催化,生物催化模型系统和有机金属反应性。 将详细讨论这些过程的反应机制。

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