High-Performance Free-Standing N-Doped C/Siox Film Anode Materials for Lithium Ion Batteries

16 Pages Posted: 14 Mar 2023

See all articles by Haoqiang Ma

Haoqiang Ma

Nanchang University

Chenxin Jin

Nanchang University

Guojun Xu

Nanchang University

Lijun Wen

Nanchang University

Chuanbin Tu

Nanchang University

Xiaomin Li

Nanchang University

Fugen Sun

Nanchang University

Lang Zhou

Nanchang University

Zhihao Yue

Nanchang University

Multiple version iconThere are 2 versions of this paper

Abstract

Silicon-carbon composites are considered as the promising anode materials for lithium ion batteries. Currently, most silicon-carbon composites were prepared by solid nano‑silicon particles as the silicon source, which suffers from high price and uneven dispersion. Here, we used tetraethyl orthosilicate (TEOS) as the liquid silicon source and polyvinylpyrrolidone (PVP) as the carbon source, homogeneously mixed in the liquid phase, and then processed through electrospinning, carbonization and nitrogen-doped processes to obtain free-standing nitrogen-doped carbon coated silicon monoxide (N-doped C/SiOx). When served as anode material, N-doped C/SiOx material can possess a reversible capacity of 488 mAh g-1 at 0.5 C (0.6 A g-1) and 377 mAh g-1 at a high current density of 2 C (2.4 A g-1). In addition, copper foil is not used as a collector for free-standing electrode structure, and eliminates the coating process of traditional electrodes, which reduces production costs. It is proposed that a facile strategy to fabricate silicon-carbon composites with good electrochemical properties and cost-effective way for lithium ion batteries.

Keywords: Lithium ion batteries, Electrospinning, Silicon-carbon composites, Nitrogen-doped

Suggested Citation

Ma, Haoqiang and Jin, Chenxin and Xu, Guojun and Wen, Lijun and Tu, Chuanbin and Li, Xiaomin and Sun, Fugen and Zhou, Lang and Yue, Zhihao, High-Performance Free-Standing N-Doped C/Siox Film Anode Materials for Lithium Ion Batteries. Available at SSRN: https://ssrn.com/abstract=4388506 or http://dx.doi.org/10.2139/ssrn.4388506

Haoqiang Ma

Nanchang University ( email )

999 Xuefu Avenue
Hong Gu Tan New District
Nanchang, 330031
China

Chenxin Jin (Contact Author)

Nanchang University ( email )

999 Xuefu Avenue
Hong Gu Tan New District
Nanchang, 330031
China

Guojun Xu

Nanchang University ( email )

999 Xuefu Avenue
Hong Gu Tan New District
Nanchang, 330031
China

Lijun Wen

Nanchang University ( email )

999 Xuefu Avenue
Hong Gu Tan New District
Nanchang, 330031
China

Chuanbin Tu

Nanchang University ( email )

999 Xuefu Avenue
Hong Gu Tan New District
Nanchang, 330031
China

Xiaomin Li

Nanchang University ( email )

999 Xuefu Avenue
Hong Gu Tan New District
Nanchang, 330031
China

Fugen Sun

Nanchang University ( email )

999 Xuefu Avenue
Hong Gu Tan New District
Nanchang, 330031
China

Lang Zhou

Nanchang University ( email )

999 Xuefu Avenue
Hong Gu Tan New District
Nanchang, 330031
China

Zhihao Yue

Nanchang University ( email )

999 Xuefu Avenue
Hong Gu Tan New District
Nanchang, 330031
China

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