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The recent advances in constructing designed electrode in lithium metal batteries

The recent advances in constructing designed electrode in lithium metal batteries

作     者:Jiecheng Cui Tian-Guang Zhan Kang-Da Zhang Dong Chen 

作者机构:Key Laboratory of the Ministry of Education for Advanced Catalysis MaterialsCollege of Chemistry and Life ScienceZhejiang Normal UniversityJinhua 321004China State Key Laboratory of Fluid Power and Mechatronic SystemsZhejiang UniversityHangzhou 310027China Institute of Process EquipmentCollege of Energy EngineeringZhejiang UniversityHangzhou 310027China 

基  金:financial support from the National Natural Science Foundation of China(Nos.21602205,11704331) Natural Science Foundation of Zhejiang Province(No.LQ18B030004) 

出 版 物:《Chinese Chemical Letters》 (中国化学快报(英文版))

年 卷 期:2017年第28卷第12期

页      码:2171-2179页

摘      要:Lithium metal battery, one of the most promising candidates for high-energy-density storage system, has attracted extensive interest due to its extremely high theoretical specific capacity, low gravimetric density and lowest negative redox potential. However, the formation of lithium dendrites, uncontrolled interfacial reactions, and huge volume change during the cycles of charging and discharging lower the Coulombic efficiency and cause harsh safety issues; they are the major hurdles towards the practical applications of lithium metal batteries. This review presents the recent advances in lithium metal battery and focuses on the functional hybrid electrodes, which are constructed to boost the electrochemical performance of metallic lithium and suppress the growth of lithium dendrites. Their general design rules, fabrication strategies, enhanced performances, and potential applications are summarized and analyzed. An outlook of the challenges and the potentials of lithium metal battery is also provided, which facilitates the future development of lithium metal batteries

主 题 词:Lithium metal batteryLithium dendritesFunctional lithium electrodeUniform depositionEnergy storage materials 

学科分类:0808[工学-自动化类] 08[工学] 

核心收录:

D O I:10.1016/j.cclet.2017.11.039

馆 藏 号:203280085...

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