Construction of CuNiAl-LDHs electrocatalyst with rich-Cu+ and —OH for highly selective reduction of CO2 to methanol
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Construction of CuNiAl-LDHs electrocatalyst with rich-Cu+ and —OH for highly selective reduction of CO2 to methanol
Construction of CuNiAl-LDHs electrocatalyst with rich-Cu+ and —OH for highly selective reduction of CO2 to methanol
中国化学工程学报(英文版)2023年64卷第12期 页码:156-167
Affiliations:
College of Chemistry, Taiyuan University of Technology,Taiyuan,China,030024
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DOI:
中图分类号:
纸质出版:2023
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Gaiqin Miao, Lifei Liu, Xia An, 等. Construction of CuNiAl-LDHs electrocatalyst with rich-Cu+ and —OH for highly selective reduction of CO2 to methanol[J]. 中国化学工程学报(英文版), 2023,64(12):156-167.
and —OH for highly selective reduction of CO
Gaiqin Miao, Lifei Liu, Xia An, 等. Construction of CuNiAl-LDHs electrocatalyst with rich-Cu+ and —OH for highly selective reduction of CO2 to methanol[J]. 中国化学工程学报(英文版), 2023,64(12):156-167.DOI:
and —OH for highly selective reduction of CODOI:
Construction of CuNiAl-LDHs electrocatalyst with rich-Cu+ and —OH for highly selective reduction of CO2 to methanol
摘要
Abstract
In this work
a high-performance CuNiAl-LDHs catalyst was innovatively synthesized for electrochemical carbon dioxide reduction (CO
2
RR) of methanol (CH
3
OH) through the modulated synthesis of Cu-based layered double hydroxide (LDHs). It was found that the optimal CuNiAl-LDHs has superior CH
3
OH selectivity compared to CuAl-LDHs and CuMgAl-LDHs
with the Faraday efficiency (FE) of 76.4% for CH
3
OH generation at -1.2 V. And their FE and current density (4.8 mA·cm
-2
) remained stable during up to 24 h of electrolysis. Meanwhile
this study confirms the significant performance advantages of CuNiAl-LDHs over their derived composite oxides. Series characterization further proves that the excellent catalytic performance of CuNiAl-LDHs is importantly associated with their richness in Cu
+
and hydroxyl group (—OH). The research expands the application fields of LDHs compounds. Meanwhile
the series of discoveries provide a new insight for the preparation of CH
3
OH by constructing CO
2
RR.
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