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作 者:Miao Zhang Wenyong Zhang Fan Zhang Chun-Sing Lee Yongbing Tang
机构地区:[1]School of Chemistry and Materials Science,Guangdong University of Education,Guangzhou 510303,China [2]Advanced Energy Storage Technology Research Center,Shenzhen Institute of Advanced Technology,Chinese Academy of Sciences,Shenzhen 518055,China [3]Center of Super-Diamond and Advanced Film(COSDAF),City University of Hong Kong,Kowloon 999077,China
出 处:《Science China Chemistry》2024年第5期1485-1509,共25页中国科学(化学英文版)
基 金:the financial support from National Key R&D Program of China (2022YFB2402600);National Natural Science Foundation of China (52125105, 51972329);NSFC/RGC Joint Research Scheme (Project No:N_City U104/20 and52061160484);Science and Technology Planning Project of Guangdong Province (2021TQ05L894);Shenzhen Science and Technology Planning Project (JSGG20211108092801002, JSGG20220831104004008);Quality and Reform Project of Guangdong province undergraduate teaching(XQSYS-2222873);Key Scientific Research Projects of General Universities in Guangdong Province (2021KCXTD086)。
摘 要:Anion-hosting cathodes capable of reversibly storing large-size anions play a leading role in dual-ion batteries(DIBs). The purpose of the present review is to summarize the most promising anion-hosting cathodes for current and late-stage DIBs. This review first summarizes the developments in conventional graphite cathodes, especially the latest advances in the graphiterelated research. Next, organic cathodes for the anion storage are discussed, including aromatic amine polymers, heterocyclic polymers, bipolar compounds, and all-carbon-unsaturated compounds. Then, the review focuses on the conversion-type cathodes with high theoretical specific capacities. Finally, the future research directions of the cathodes of DIBs are proposed.
关 键 词:dual-ion batteries organic cathodes graphite cathodes conversion-type cathodes
分 类 号:TM912[电气工程—电力电子与电力传动] O646[理学—物理化学]
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