稀有金属(英文版)2024,Vol.43Issue(3) :1017-1029.DOI:10.1007/s12598-023-02498-4

Monothetic and conductive network and mechanical stress releasing layer on micron-silicon anode enabling high-energy solid-state battery

Xiang Han Min Xu Lan-Hui Gu Chao-Fei Lan Min-Feng Chen Jun-Jie Lu Bi-Fu Sheng Peng Wang Song-Yan Chen Ji-Zhang Chen
稀有金属(英文版)2024,Vol.43Issue(3) :1017-1029.DOI:10.1007/s12598-023-02498-4

Monothetic and conductive network and mechanical stress releasing layer on micron-silicon anode enabling high-energy solid-state battery

Xiang Han 1Min Xu 1Lan-Hui Gu 1Chao-Fei Lan 2Min-Feng Chen 1Jun-Jie Lu 1Bi-Fu Sheng 1Peng Wang 3Song-Yan Chen 2Ji-Zhang Chen1
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作者信息

  • 1. College of Materials Science and Engineering,Co-Innovation Center of Efficient Processing and Utilization of Forestry Resources,Nanjing Forestry University,Nanjing 210037,China
  • 2. Department of Physics,Xiamen University,Xiamen 361005,China
  • 3. Western Digital Corporation,Milpitas,CA 95035,USA
  • 折叠

Abstract

Silicon has ultrahigh capacity,dendrite-free alloy lithiation mechanism and low cost and has been regarded as a promising anode candidate for solid-state battery.Owing to the low infiltration of solid-state elec-trolyte(SSE),not the unstable solid-electrolyte interphase(SEI),but the huge stress during lithiation-and delithia-tion-induced particle fracture and conductivity lost tend to be the main issues.In this study,starting with micron-Si,a novel monothetic carbon conductive framework and a MgO coating layer are designed,which serve as electron pathway across the whole electrode and stress releasing layer,respectively.In addition,the in situ reaction between Si and SSE helps to form a LiF-rich and mechanically stable SEI layer.As a result,the mechanical stability and charge transfer kinetics of the uniquely designed Si anode are significantly improved.Consequently,high initial Coulombic efficiency,high capacity and durable cycling stability can be achieved by applying the Si@MgO@C anode in SSB.For example,high specific capacity of 3224.6 mAh·g-1 and long cycling durability of 200 cycles are achieved.This work provides a new concept for designing alloy-type anode that combines surface coating on particle and electrode structure design.

Key words

Lithium-ion battery(LIB)/Solid-state electrolyte(SSE)/Silicon anode/Stress relief/Coating

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基金项目

National Natural Science Foundation of China(22209075)

Natural Science Foundation of Jiangsu Province(BK20200800)

出版年

2024
稀有金属(英文版)
中国有色金属学会

稀有金属(英文版)

CSTPCDCSCDEI
影响因子:0.801
ISSN:1001-0521
参考文献量36
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