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一种双铜(III)双氧化物配合物对外源底物的选择性氧化:机理与范围

Selective Oxidation of Exogenous Substrates by a Bis-Cu(III) Bis-Oxide Complex: Mechanism and Scope.

作者信息

Large Tao A G, Mahadevan Viswanath, Keown William, Stack T Daniel P

机构信息

Department of Chemistry, Stanford University, Stanford, CA 94305, USA.

出版信息

Inorganica Chim Acta. 2019 Feb 24;486:782-792. doi: 10.1016/j.ica.2018.11.027. Epub 2018 Nov 22.

Abstract

Cu(III)(μ-O) bis-oxides () form spontaneously by direct oxygenation of nitrogen-chelated Cu(I) species and constitute a diverse class of versatile 2e/2H oxidants, but while these species have attracted attention as biomimetic models for dinuclear Cu enzymes, reactivity is typically limited to intramolecular ligand oxidation, and systems exhibiting synthetically useful reactivity with exogenous substrates are limited. (TMPD = , , , -tetramethylpropane-1,3-diamine) presents an exception, readily oxidizing a diverse array of exogenous substrates, including primary alcohols and amines selectively over their secondary counterparts in good yields. Mechanistic and DFT analyses suggest substrate oxidation proceeds through initial axial coordination, followed by rate limiting rotation to position the substrate in the Cu(III) equatorial plane, whereupon rapid deprotonation and oxidation by net hydride transfer occurs. Together, the results suggest the selectivity and broad substrate scope unique to are best attributed to the combination of ligand flexibility, limited steric demands, and ligand oxidative stability. In keeping with the absence of rate limiting C-H scission, exhibits a marked sensitivity to the strength of the substrate C-H bond, readily oxidizing benzyl alcohol and 1 octanol at near identical rates.

摘要

Cu(III)(μ-O)双氧化物()通过氮螯合的Cu(I)物种的直接氧化自发形成,构成了一类多样的通用2e/2H氧化剂,但尽管这些物种作为双核铜酶的仿生模型受到了关注,其反应活性通常仅限于分子内配体氧化,而与外源底物表现出合成上有用反应活性的体系却很有限。(TMPD = ,,,,-四甲基丙烷-1,3-二胺)是一个例外,它能轻易地氧化多种外源底物,包括伯醇和胺,对仲醇的选择性良好,产率较高。机理和密度泛函理论分析表明,底物氧化通过初始轴向配位进行,随后是限速旋转,将底物定位在Cu(III)赤道平面上,然后通过净氢化物转移快速去质子化和氧化。总之,结果表明独特于的选择性和广泛的底物范围最好归因于配体灵活性、有限的空间需求和配体氧化稳定性的结合。与不存在限速C-H断裂一致,对底物C-H键的强度表现出明显的敏感性,能以几乎相同的速率轻易氧化苄醇和1-辛醇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/96c6/6724545/15c738b34fde/nihms-1516497-f0002.jpg

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