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作 者:Meng Liu Guocheng Lv Tianming Liu Hao Liu Lingchang Kong Lintao Tian Wenxiu Rao Yuxin Li Libing Liao Juchen Guo
机构地区:[1]Engineering Research Center of Ministry of Education for Geological Carbon Storage and Low Carbon Utilization of Resources,Beijing Key Laboratory of Materials Utilization of Nonmetallic Minerals and Solid Wastes,National Laboratory of Mineral Materials,School of Materials Science and Technology,China University of Geosciences(Beijing),100083,China [2]School of Science,China University of Geosciences,Beijing,100083,China [3]Materials Science and Engineering Program,University of California-Riverside,Riverside,CA,92521,United States [4]Department of Chemical and Environmental Engineering,University of California–Riverside,CA,92521,United States
出 处:《Progress in Natural Science:Materials International》2023年第1期8-15,共8页自然科学进展·国际材料(英文版)
基 金:supported by the National Natural Science Foundation of China (No.21875223);support from the U.S.National Science Foundation through grant CBET-1751929.
摘 要:Chevrel phase compounds have attracted increasing attention as electrochemical energy storage materials and electro-catalysts.Benefiting from their unique crystal structure,Chevrel phase compounds can not only function as the host structures for reversible intercalation of a broad range of cations,but also exhibit high catalytic activity in electrochemical reduction reactions.Here we provide an overview of recent progress in the development of Chevrel phase materials including new understanding of structural features,synthetic methods,and electro-chemical properties.A brief conclusion and perspectives on the future development of Chevrel phase materials are also provided.
关 键 词:Chevrel phase Electrochemical properties Energy storage ELECTRO-CATALYSIS
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