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电化学 CO2 还原在水相溶液中多相分子 Cu 催化剂上制取烃类。

Electrochemical CO2 Reduction to Hydrocarbons on a Heterogeneous Molecular Cu Catalyst in Aqueous Solution.

机构信息

Department of Chemistry, Yale University , New Haven, Connecticut 06520, United States.

Energy Sciences Institute, Yale University , West Haven, Connecticut 06516, United States.

出版信息

J Am Chem Soc. 2016 Jul 6;138(26):8076-9. doi: 10.1021/jacs.6b04746. Epub 2016 Jun 23.

Abstract

Exploration of heterogeneous molecular catalysts combining the atomic-level tunability of molecular structures and the practical handling advantages of heterogeneous catalysts represents an attractive approach to developing high-performance catalysts for important and challenging chemical reactions such as electrochemical carbon dioxide reduction which holds the promise for converting emissions back to fuels utilizing renewable energy. Thus, far, efficient and selective electroreduction of CO2 to deeply reduced products such as hydrocarbons remains a big challenge. Here, we report a molecular copper-porphyrin complex (copper(II)-5,10,15,20-tetrakis(2,6-dihydroxyphenyl)porphyrin) that can be used as a heterogeneous electrocatalyst with high activity and selectivity for reducing CO2 to hydrocarbons in aqueous media. At -0.976 V vs the reversible hydrogen electrode, the catalyst is able to drive partial current densities of 13.2 and 8.4 mA cm(-2) for methane and ethylene production from CO2 reduction, corresponding to turnover frequencies of 4.3 and 1.8 molecules·site(-1)·s(-1) for methane and ethylene, respectively. This represents the highest catalytic activity to date for hydrocarbon production over a molecular CO2 reduction electrocatalyst. The unprecedented catalytic performance is attributed to the built-in hydroxyl groups in the porphyrin structure and the reactivity of the copper(I) metal center.

摘要

探索结合分子结构原子级可调性和多相催化剂实际处理优势的异质分子催化剂,是开发用于重要挑战性化学反应(如电化学二氧化碳还原)的高性能催化剂的一种很有吸引力的方法,电化学二氧化碳还原有望利用可再生能源将排放物转化为燃料。到目前为止,将二氧化碳高效且选择性地还原为深度还原产物(如烃类)仍然是一个巨大的挑战。在这里,我们报告了一种分子铜卟啉配合物(铜(II)-5,10,15,20-四(2,6-二羟基苯基)卟啉),它可以用作多相电催化剂,在水相介质中具有高活性和选择性,用于将二氧化碳还原为烃类。在相对于可逆氢电极的-0.976 V 下,催化剂能够驱动甲烷和乙烯从二氧化碳还原生成的部分电流密度分别为 13.2 和 8.4 mA cm(-2),甲烷和乙烯的周转频率分别为 4.3 和 1.8 个分子·位(-1)·s(-1)。这代表了迄今为止分子 CO2 还原电催化剂用于烃类生产的最高催化活性。前所未有的催化性能归因于卟啉结构中的内置羟基和铜(I)金属中心的反应性。

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