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Chevrel Phase Mo6T8 (T = S,Se) as Electrodes for Advanced Energy Storage
Authors:Lin Mei  Jiantie Xu  Zengxi Wei  Huakun Liu  Yutao Li  Jianmin Ma  Shixue Dou
Affiliation:1. School of Physics and Electronics, Hunan University, Changsha, P. R. China;2. Institute for Superconducting and Electronic Materials, University of Wollongong, Wollongong, Australia;3. Materials Science and Engineering Program & Texas Materials Institute, The University of Texas at Austin, Austin, TX, USA
Abstract:With the large‐scale applications of electric vehicles in recent years, future batteries are required to be higher in power and possess higher energy densities, be more environmental friendly, and have longer cycling life, lower cost, and greater safety than current batteries. Therefore, to develop alternative electrode materials for advanced batteries is an important research direction. Recently, the Chevrel phase Mo6T8 (T = S, Se) has attracted increasing attention as electrode candidate for advanced batteries, including monovalent (e.g., lithium and sodium) and multivalent (e.g., magnesium, zinc and aluminum) ion batteries. Benefiting from its unique open crystal structure, the Chevrel phase Mo6T8 cannot only ensure rapid ion transport, but also retain the structure stability during electrochemical reactions. Although the history of the research on Mo6T8 as electrodes for advanced batteries is short, there has been significant progress on the design and fabrication of Mo6T8 for various advanced batteries as above mentioned. An overview of the recent progress on Mo6T8 electrodes applied in advanced batteries is provided, including synthesis methods and diverse structures for Mo6T8, and electrochemical mechanism and performance of Mo6T8. Additionally, a briefly conclusion on the significant progress, obvious drawbacks, emerging challenges and some perspectives on the research of Mo6T8 for advanced batteries in the near future is provided.
Keywords:lithium–  ion batteries  Mo6S8  Mo6Se8  multivalent ion batteries  sodium–  ion batteries
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