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首页|期刊导航|应用化学|通过局部环境优化实现铜纳米团簇高效二氧化碳电还原制甲烷

通过局部环境优化实现铜纳米团簇高效二氧化碳电还原制甲烷

李宁静 诸颖 李江 陈静

应用化学2026,Vol.43Issue(8):1229-1237,中插1-中插6,15.
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应用化学2026,Vol.43Issue(8):1229-1237,中插1-中插6,15.DOI:10.19894/j.issn.1000-0518.260057

通过局部环境优化实现铜纳米团簇高效二氧化碳电还原制甲烷

Efficient Electrochemical Reduction of CO2 to Methane by Local Environment Optimization of Copper Nanoclusters

李宁静 1诸颖 2李江 2陈静2

作者信息

  • 1. 中国科学院上海应用物理研究所,上海 201800||中国科学院大学,北京 100049
  • 2. 上海大学理学院材料生物学研究所,上海 201800
  • 折叠

摘要

Abstract

In electrocatalytic CO2 reduction reaction(CO2 RR),modulating the catalyst layer structure is an effective strategy for optimizing the local CO2 concentration and enhancing catalytic performance.This study synthesized an atomically precise Cu4 nanocluster([Cu4(PPh3)4(4-EBA)3]PF6)featuring a tetrahedral copper core and investigated the influence of catalyst layer fabrication methods on CO2 RR performance.By optimizing the drop-casting,hand-painting,and spray-coating techniques,it was found that the catalyst layer prepared by drop-casting was thin and dense,exhibiting the largest double-layer capacitance(Cdl=0.951 mF/cm2),which indicates a higher electrochemical active area conducive to CH4 generation at high current densities.After optimizing the feed concentration and flow rate,the system achieved a Faradaic efficiency of 61%for CH4 at a current density of 400 mA/cm2.The high activity of the drop-cast catalyst electrode may be attributed to two factors:the thin catalyst layer shortens the transport pathways for electrons and protons,while the dense structure confers high hydrophobicity,effectively suppressing the hydrogen evolution reaction.This work provides new insights into the design of efficient copper nanocluster catalysts and the optimization of catalyst layers.

关键词

电还原/铜纳米团簇/甲烷/CO2

Key words

Electrochemical reduction/Copper nanoclusters/CH4/CO2

分类

化学化工

引用本文复制引用

李宁静,诸颖,李江,陈静..通过局部环境优化实现铜纳米团簇高效二氧化碳电还原制甲烷[J].应用化学,2026,43(8):1229-1237,中插1-中插6,15.

基金项目

国家重点研发计划(No.2023YFC3404200)资助 Supported by the National Key Research and Development Program(No.2023YFC3404200) (No.2023YFC3404200)

应用化学

1000-0518

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