Controlled Prelithiation of Siloxene Nanosheet Anodes Enables High Performance 5v-Class Lithium-Ion Batteries

29 Pages Posted: 27 Aug 2022

See all articles by Hengtao Shen

Hengtao Shen

Shandong University

Yongling An

Shandong University

Quanyan Man

Shandong University

Jingyan Wang

Shandong University

Chengkai Liu

Shandong University

Baojuan Xi

Shandong University

Shenglin Xiong

Shandong University

Jinkui Feng

Shandong University

Yitai Qian

University of Science and Technology of China (USTC) - School of Chemistry and Materials Science

Abstract

Two-dimensional siloxene nanosheet has attracted great attention as an advanced anode for lithium-ion batteries (LIBs) due to its special characters. However, the high surface area leads to a low initial Coulombic efficiency (ICE) and large irreversible capacity, impeding the further application of siloxene. In this work, controlled chemical prelithiation is designed to overcome the issue. The effects of prelithiated condition on physical and electrochemical performance are probed. Uniform SEI film and high coulombic efficiency is obtained with a 15 minutes prelithiation process. The prelithiated siloxene anode shows high ICE, superior rate performance and stable cycling performance. When coupled with 5V-class LiNi 0.5 Mn 1.5 O 4 cathodes, an enhanced capacity retention of 94.3% is achieved after 200 cycles. This work may be useful for designing advanced anodes for rechargeable batteries.

Keywords: siloxene, Anode, lithium-ion batteries, chemical prelithiation, Coulombic efficiency

Suggested Citation

Shen, Hengtao and An, Yongling and Man, Quanyan and Wang, Jingyan and Liu, Chengkai and Xi, Baojuan and Xiong, Shenglin and Feng, Jinkui and Qian, Yitai, Controlled Prelithiation of Siloxene Nanosheet Anodes Enables High Performance 5v-Class Lithium-Ion Batteries. Available at SSRN: https://ssrn.com/abstract=4202037 or http://dx.doi.org/10.2139/ssrn.4202037

Hengtao Shen

Shandong University ( email )

27 Shanda Nanlu
South Rd.
Jinan, SD 250100
China

Yongling An

Shandong University ( email )

27 Shanda Nanlu
South Rd.
Jinan, SD 250100
China

Quanyan Man

Shandong University ( email )

27 Shanda Nanlu
South Rd.
Jinan, SD 250100
China

Jingyan Wang

Shandong University ( email )

27 Shanda Nanlu
South Rd.
Jinan, SD 250100
China

Chengkai Liu

Shandong University ( email )

27 Shanda Nanlu
South Rd.
Jinan, SD 250100
China

Baojuan Xi

Shandong University ( email )

27 Shanda Nanlu
South Rd.
Jinan, SD 250100
China

Shenglin Xiong

Shandong University ( email )

27 Shanda Nanlu
South Rd.
Jinan, SD 250100
China

Jinkui Feng (Contact Author)

Shandong University ( email )

Yitai Qian

University of Science and Technology of China (USTC) - School of Chemistry and Materials Science ( email )

Hefei, Anhui
China

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