【摘 要】
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With wide application of electric vehicles and large-scale in energy storage systems,the requirement of secondary batteries with higher power density and better safety gets urgent.Owing to the merits of high theoretical capacity,relatively low cost and su
【机 构】
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State Key Laboratory of Physical Chemistry of Solid Surfaces, State-Province Joint Engineering Labor
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With wide application of electric vehicles and large-scale in energy storage systems,the requirement of secondary batteries with higher power density and better safety gets urgent.Owing to the merits of high theoretical capacity,relatively low cost and suitable discharge voltage,much attention has been paid to the transition metal sulfides.Recently,a large amount of research papers have reported about the application of transition metal sulfides in lithium ion batteries.However,the practical application of transition metal sulfides is still impeded by their fast capacity fading and poor rate performance.More well-focused researches should be operated towards the commercialization of transition metal sulfides in lithium ion batteries.In this review,recent development of using transition metal sulfides such as copper sulfides,molybdenum sulfides,cobalt sulfides,and iron sulfides as electrode materials for lithium ion batteries is presented.In addition,the electrochemical reaction mechanisms and synthetic strategy of transition metal sulfides are briefly summarized.The critical issues,challenges,and perspectives providing a further understanding of the associated electrochemical processes are also discussed.
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Binghai Dong received his bachelor\'s degree and master\'s degree in the Materials Science & Engineering School in Wuhan University of Technology in 1995 and 2002, respectively, and Ph.D. degree from Hubei University in 2011. After working for 8 years
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