Pressure-Induced Pre-Lithiation Enables High-Performing Si Anodes in All-Solid-State Batteries

Weifei Hu , Yuanyuan Li , Jinping Liu

Energy & Environmental Materials ›› 2024, Vol. 7 ›› Issue (6) : e12786

PDF
Energy & Environmental Materials ›› 2024, Vol. 7 ›› Issue (6) : e12786 DOI: 10.1002/eem2.12786
COMMENTARY

Pressure-Induced Pre-Lithiation Enables High-Performing Si Anodes in All-Solid-State Batteries

Author information +
History +
PDF

Abstract

A commentary on pressure-induced pre-lithiation towards Si anodes in all-solid-state Li-ion batteries (ASSLIBs) using sulfide electrolytes (SEs) is presented. First, feasible pre-lithiation technologies for Si anodes in SE-based ASSLIBs especially the significant pressure-induced pre-lithiation strategies are briefly reviewed. Then, a recent achievement by Meng et al. in this field is elaborated in detail. Finally, the significance of Meng’s work is discussed.

Keywords

all-solid-state Li-ion batteries / pre-lithiation / pressure / Si anode / sulfide electrolyte

Cite this article

Download citation ▾
Weifei Hu, Yuanyuan Li, Jinping Liu. Pressure-Induced Pre-Lithiation Enables High-Performing Si Anodes in All-Solid-State Batteries. Energy & Environmental Materials, 2024, 7(6): e12786 DOI:10.1002/eem2.12786

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

P. Li, G. Chen, N. Zhang, R. Ma, X. Liu, Energy Environ. Mater. 2020, 4, 72.

[2]

L. Chen, X. Fan, X. Ji, J. Chen, S. Hou, C. Wang, Joule 2019, 3, 732.

[3]

M. Kim, H. Ahn, J. Choi, W. B. Kim, Energ. Technol. 2023, 11, 2201321.

[4]

V. Müller, R. Bernhard, J. Wegener, J. Pfeiffer, S. Rössler, R.-G. Scurtu, M. Memm, M. A. Danzer, M. Wohlfahrt-Mehrens, Energ. Technol. 2020, 8, 2000217.

[5]

W.-R. Liu, Z.-Z. Guo, W.-S. Young, D.-T. Shieh, H.-C. Wu, M.-H. Yang, N.-L. Wu, J. Power Sources 2005, 140, 139.

[6]

Z. Wang, M. Yao, H. Luo, C. Xu, H. Tian, Q. Wang, H. Wu, Q. Zhang, Y. Wu, Small 2023, 20, 2306428.

[7]

J. Rohrer, K. Albe, J. Phys. Chem. C 2013, 117, 18796.

[8]

Y. Zhang, B. Wu, G. Mu, C. Ma, D. Mu, F. Wu, J. Energy Chem. 2022, 64, 615.

[9]

W. Wu, M. Wang, J. Wang, C. Wang, Y. Deng, ACS Appl. Energy Mater. 2020, 3, 3884.

[10]

Y. Nikodimos, C.-J. Huang, B. W. Taklu, W.-N. Su, B. J. Hwang, Energy Environ. Sci. 2022, 15, 991.

[11]

J. Lee, D. Jin, J. Y. Kim, Y. Roh, H. Lee, S. H. Kang, J. Choi, T. Jo, Y. G. Lee, Y. M. Lee, Adv. Energy Mater. 2023, 13, 2300172.

[12]

W. Yan, Z. Mu, Z. Wang, Y. Huang, D. Wu, P. Lu, J. Lu, J. Xu, Y. Wu, T. Ma, M. Yang, X. Zhu, Y. Xia, S. Shi, L. Chen, H. Li, F. Wu, Nat. Energy 2023, 8, 800.

[13]

S.-Y. Ham, E. Sebti, A. Cronk, T. Pennebaker, G. Deysher, Y.-T. Chen, J. A. S. Oh, J. B. Lee, M. S. Song, P. Ridley, D. H. S. Tan, R. J. Clément, J. Jang, Y. S. Meng, Nat. Commun. 2024, 15, 2991.

[14]

P. Bärmann, M. Diehl, L. Göbel, M. Ruttert, S. Nowak, M. Winter, T. Placke, J. Power Sources 2020, 464, 228224.

RIGHTS & PERMISSIONS

2024 The Author(s). Energy & Environmental Materials published by John Wiley & Sons Australia, Ltd on behalf of Zhengzhou University.

AI Summary AI Mindmap
PDF

139

Accesses

0

Citation

Detail

Sections
Recommended

AI思维导图

/