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三铜簇在环境条件下高效和选择性电催化氧化甲烷。

Voltage-Gated Electrocatalysis of Efficient and Selective Methane Oxidation by Tricopper Clusters under Ambient Conditions.

机构信息

Institute of Chemistry, Academia Sinica, Nangang, Taipei 11529, Taiwan.

Chemical Biology and Molecular Biophysics Program, Taiwan International Graduate Program (TIGP), Academia Sinica, Taipei 11529, Taiwan.

出版信息

J Am Chem Soc. 2022 Jun 8;144(22):9695-9706. doi: 10.1021/jacs.2c01169. Epub 2022 May 27.

Abstract

Selective methane oxidation is difficult chemistry. Here we describe a strategy for the electrocatalysis of selective methane oxidation by immobilizing tricopper catalysts on the cathodic surface. In the presence of dioxygen and methane, the activation of these catalysts above a threshold cathodic potential can initiate the dioxygen chemistry for O atom transfer to methane. The catalytic turnover is completed by facile electron injections into the tricopper catalysts from the electrode. This technology leads to dramatic enhancements in performance of the catalysts toward methane oxidation. Unprecedented turnover frequencies (>40 min) and high product throughputs (turnover numbers >30 000 in 12 h) are achieved for this challenging chemical transformation in water under ambient conditions. The technology is green and suitable for on-site direct conversion of methane into methanol.

摘要

选择性甲烷氧化是一项具有挑战性的化学过程。在这里,我们描述了一种通过将三铜催化剂固定在阴极表面来实现选择性甲烷氧化电催化的策略。在氧气和甲烷存在的情况下,这些催化剂在超过阈值阴极电势的情况下被激活,可以引发氧气化学,将氧原子转移到甲烷中。通过电极将电子容易地注入到三铜催化剂中,完成催化循环。这项技术显著提高了催化剂在甲烷氧化反应中的性能。在环境条件下的水中,对于这种具有挑战性的化学转化,实现了前所未有的转化频率(>40 min)和高产物通量(在 12 小时内转化数>30000)。该技术绿色环保,适用于现场直接将甲烷转化为甲醇。

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