Highly Efficient CO2 Reduction at Steady 2 A cm−2 by Surface Reconstruction of Silver Penetration Electrode

Author:

Li Shoujie1,Dong Xiao1,Mao Jianing123,Chen Wei12ORCID,Chen Aohui12,Wu Gangfeng12,Zhu Chang12,Li Guihua1,Wei Yiheng12,Liu Xiaohu1,Wang Jiangjiang12,Song Yanfang12,Wei Wei12

Affiliation:

1. Low‐Carbon Conversion Science and Engineering Center Shanghai Advanced Research Institute Chinese Academy of Sciences 100 Haike Road Shanghai 201210 P. R. China

2. University of Chinese Academy of Sciences Beijing 100049 P. R. China

3. Shanghai Institute of Applied Physics Chinese Academy of Sciences Shanghai 201204 P. R. China

Abstract

AbstractElectroreduction of CO2 to CO is a promising route for greenhouse gas resource utilization, but it still suffers from impractical current density and poor durability. Here, a nanosheet shell (NS) vertically standing on the Ag hollow fiber (NS@Ag HF) surface formed by electrochemical surface reconstruction is reported. As‐prepared NS@Ag HF as a gas penetration electrode exhibited a high CO faradaic efficiency of 97% at an ultra‐high current density of 2.0 A cm−2 with a sustained performance for continuous >200 h operation. The experimental and theoretical studies reveal that promoted surface electronic structures of NS@Ag HF by the nanosheets not only suppress the competitive hydrogen evolution reaction but also facilitate the CO2 reduction kinetics. This work provides a feasible strategy for fabricating robust catalysts for highly efficient and stable CO2 reduction.

Funder

National Natural Science Foundation of China

Youth Innovation Promotion Association of the Chinese Academy of Sciences

Chinese Academy of Sciences

Publisher

Wiley

Subject

Biomaterials,Biotechnology,General Materials Science,General Chemistry

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