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3D Cellulose Graphene Aerogel with Self-Redox CeO2 as Li2S Host for High-Performance Li–S Battery ( EI收录)
文献类型:期刊文献
英文题名:3D Cellulose Graphene Aerogel with Self-Redox CeO2 as Li2S Host for High-Performance Li–S Battery
作者:Yu, Hao[1]; Zhou, Xi[1]; Zeng, Peng[1]; Guo, Changmeng[1]; Liu, Hong[1]; Guo, Xiaowei[2]; Chang, Baobao[3]; Chen, Manfang[1]; Su, Jincang[1]; Wang, Xianyou[1]
第一作者:Yu, Hao
机构:[1] National Base for International Science & Technology Cooperation, National Local Joint Engineering Laboratory for Key Materials of New Energy Storage Battery, Hunan Province Key Laboratory of Electrochemical Energy Storage & Conversion, School of Chemistry, Xiangtan University, Xiangtan, 411105, China; [2] School of Chemistry & Material Engineering, Xinxiang University, Henan, Xinxiang, 453003, China; [3] Key Laboratory of Materials Processing and Mold of Ministry of Education, Zhengzhou University, Henan, Zhengzhou, 450001, China
第一机构:National Base for International Science & Technology Cooperation, National Local Joint Engineering Laboratory for Key Materials of New Energy Storage Battery, Hunan Province Key Laboratory of Electrochemical Energy Storage & Conversion, School of Chemistry, Xiangtan University, Xiangtan, 411105, China
通讯机构:[1]National Base for International Science & Technology Cooperation, National Local Joint Engineering Laboratory for Key Materials of New Energy Storage Battery, Hunan Province Key Laboratory of Electrochemical Energy Storage & Conversion, School of Chemistry, Xiangtan University, Xiangtan, 411105, China;[1]National Base for International Science & Technology Cooperation, National Local Joint Engineering Laboratory for Key Materials of New Energy Storage Battery, Hunan Province Key Laboratory of Electrochemical Energy Storage & Conversion, School of Chemistry, Xiangtan University, Xiangtan, 411105, China;[1]National Base for International Science & Technology Cooperation, National Local Joint Engineering Laboratory for Key Materials of New Energy Storage Battery, Hunan Province Key Laboratory of Electrochemical Energy Storage & Conversion, School of Chemistry, Xiangtan University, Xiangtan, 411105, China
年份:2022
卷号:10
期号:12
外文期刊名:Energy Technology
收录:EI(收录号:20223912786421);Scopus(收录号:2-s2.0-85138550536)
语种:英文
外文关键词:Activation energy - Aerogels - Cathodes - Cellulose - Cerium oxide - Electrocatalysts - Graphene - Lithium batteries - Lithium compounds - Lithium sulfur batteries - Polysulfides - Reaction kinetics
摘要:Lithium sulfide is considered the promising cathode material of a Li–S battery because of its high theoretical capacity, high melting point, affordable volume expansion, and lithium composition. However, the quick capacity fading and high activation energy barrier due to low electronic and ionic conductivity and polysulfide shuttle effect still restrict the practical application of the Li2S cathode. Herein, CeO2 is introduced with unique self-redox characteristics into cellulose graphene aerogel (CGA) with the 3D interconnected structure (CGA/CeO2) as the host of Li2S. It is found that CGA/CeO2 can provide plentiful three-phase boundary for the chemisorption to LiPSs through the strong polarity of CeO2. Moreover, the ultrastrong polarity of CeO2 can restrain the LiPSs shuttle, and CeO2 can spontaneously oxidize polysulfide, thus boosting the conversion reaction kinetics and comprehensive electrochemical performances of Li–S battery based on Li2S cathode. As a result, these features reciprocate Li2S-CGA/CeO2 cathode excellent electrochemical performances. Therefore, this work not only provides a significant exploration for the mechanical explanation of the cerium oxide catalytic conversion reaction but also provides a brand-new idea for the excellent electric catalyst for the catalytic conversion reaction of polysulfide in lithium–sulfide batteries. ? 2022 Wiley-VCH GmbH.
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