首页> 美国卫生研究院文献>ACS Central Science >Second-Order Biomimicry: In Situ Oxidative Self-ProcessingConverts Copper(I)/Diamine Precursor into a Highly Active AerobicOxidation Catalyst
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Second-Order Biomimicry: In Situ Oxidative Self-ProcessingConverts Copper(I)/Diamine Precursor into a Highly Active AerobicOxidation Catalyst

机译:二阶仿生学:原位氧化自处理将铜(I)/二胺前体转化为高活性好氧氧化催化剂

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摘要

A homogeneous Cu-based catalyst system consisting of [Cu(MeCN)4]PF6, N,N′-di-tert-butylethylenediamine (DBED), and p-(N,N-dimethylamino)pyridine (DMAP) mediates efficient aerobic oxidation of alcohols. Mechanistic study of this reaction shows that the catalyst undergoes an in situ oxidative self-processing step, resulting in conversion of DBED into a nitroxyl that serves as an efficient cocatalyst for aerobic alcohol oxidation. Insights into this behavior are gained from kinetic studies, which reveal an induction period at the beginning of the reaction that correlates with the oxidative self-processing step, EPR spectroscopic analysis of the catalytic reaction mixture, which shows the buildup of the organic nitroxyl species during steady state turnover, and independent synthesis of oxygenated DBED derivatives, which are shown to serve as effective cocatalysts and eliminate the induction period in the reaction. The overall mechanism bears considerable resemblance to enzymatic reactivity. Most notable is the “oxygenase”-type self-processing step that mirrors generation of catalytic cofactors in enzymes via post-translational modification of amino acid sidechains. This higher-order function within a synthetic catalyst systempresents new opportunities for the discovery and development of biomimeticcatalysts.
机译:由[Cu(MeCN)4] PF6,N,N'-二叔丁基乙二胺(DBED)和对-(N,N-二甲基氨基)吡啶(DMAP)组成的均相铜基催化剂体系可介导有效的好氧氧化酒精。该反应的机理研究表明,该催化剂经历了原位氧化自处理步骤,从而导致DBED转化为硝酰,后者可作为需氧醇氧化的有效助催化剂。从动力学研究中获得了对这种行为的洞察力,动力学研究揭示了反应开始时的诱导期与氧化自处理步骤相关,催化反应混合物的EPR光谱分析表明在反应过程中有机硝氧基种类的积累。稳定的周转率和氧化DBED衍生物的独立合成,这些化合物可作为有效的助催化剂并消除反应的诱导期。总体机制与酶反应性非常相似。最值得注意的是“加氧酶”型自我加工步骤,通过氨基酸侧的翻译后修饰反映了酶中催化辅因子的产生链。合成催化剂系统中的高级功能为仿生的发现和发展提供了新的机会催化剂。

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