典型文献
Graphene oxide-derived single-atom catalysts for electrochemical energy conversion
文献摘要:
Sustainable electrochemical energy conversion is considered as a promising solution to energy crises and environmental issues.Owing to their maximized utilization efficiency and excellent catalytic performance,single-atom catalysts(SACs)have obtained tremendous attention in the field of electrochemical energy conversion.In the last few years,graphene oxide(GO)has been considered to be a promising precursor for fabricating graphene-supported SACs due to its advantageous features such as large surface area,high density of intrinsic defects,and scalability.In this review,the recent advances in the preparation of gra-phene oxide-derived single-atom catalysts(GO-SACs)and their diverse electrochemical applications are summarized.Firstly,the synthetic strategies of GO-SACs are discussed with focuses on the advantages and shortages of each method.Subsequently,the electrochemical applications of GO-SACs in various energy conversion processes,including the oxygen reduction reaction(ORR),oxygen evolution reaction(OER),hydrogen evolution reaction(HER),nitrogen reduction reaction(NRR),and carbon dioxide reduction reaction(CO2RR),are discussed in detail.Finally,the remaining challenges and future pro-spects in the fabrication and application of GO-SACs are presented.
文献关键词:
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作者姓名:
Jian-Bin Liu;Hai-Sheng Gong;Gong-Lan Ye;Hui-Long Fei
作者机构:
State Key Laboratory of Chemo/Biosensing and Chemometrics,College of Chemistry and Chemical Engineering,Hunan University,Changsha 410082,China
文献出处:
引用格式:
[1]Jian-Bin Liu;Hai-Sheng Gong;Gong-Lan Ye;Hui-Long Fei-.Graphene oxide-derived single-atom catalysts for electrochemical energy conversion)[J].稀有金属(英文版),2022(05):1703-1726
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0.563665
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