Energy Storage Science and Technology ›› 2023, Vol. 12 ›› Issue (3): 639-653.doi: 10.19799/j.cnki.2095-4239.2023.0096

• Research Highlight •     Next Articles

Reviews of selected 100 recent papers for lithium batteriesDec. 12022 to Jan. 312023

Xiaoyu SHEN(), Jing ZHU, Guanjun CEN, Ronghan QIAO, Junfeg HAO, Mengyu TIAN, Hongxiang JI, Zhou JIN, Yida WU, Yuanjie ZHAN, Yong YAN, Liubin BEN, Hailong YU, Yanyan LIU, Xuejie HUANG()   

  1. Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China
  • Received:2023-02-23 Online:2023-03-05 Published:2023-04-14
  • Contact: Xuejie HUANG E-mail:shenxiaoyu19@mails.ucas.ac.cn;xjhuang@iphy.ac.cn

Abstract:

This bimonthly review paper highlights 100 recent published papers on lithium batteries. We searched the Web of Science and found 3084 papers online from Dec. 1, 2022 to Jan. 31, 2023. 100 of them were selected to be highlighted. High-nickel ternary layered oxides, LiNiO2 and LiNi0.5Mn1.5O4 as cathode materials are included in the investigations for doping and surface coating to stabilize crystal structural and suppress interface side reactions. For anode, investigations mainly focus on Si-based anode, lithium metal and anode-free technology. Meanwhile, the surface coating, interface construction and binder design draw much interest to relieve the volume expansion of Si-based anode. The interface engineering of Li metal and anode-free collector has been widely studied. Researches for solid state electrolyte including sulfide, polymer and composite electrolyte, emphasize the synthesis process, electrolyte film preparation and electrolyte-electrode interface construction. While large efforts are still devoted to liquid electrolytes for the electrolyte-electrode interface design and regulation using additives. For solid-state batteries, there are a few papers related to the surface coating, design of composite cathode and inhibition of Li dendrite and side reactions. Other relevant works are also presented to the cathode design of lithium sulfur battery. The characterization techniques are focused on chemical component measurement, battery failure analysis, lithium deposition behavior and SEI. Theoretical simulations are directed to battery performance prediction and electrolyte design. The interfaces of electrolyte/electrodes are also drawn large attentions.

Key words: lithium batteries, cathode material, anode material, solid state electrolyte, solid state batteries

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