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Encapsulating homogenous ultra-fine SnO2/TiO2 particles into carbon nanofibers through electrospinning as high-performance anodes for lithium-ion batteries.

Authors :
Mou, Haoyi
Chen, Shuxin
Xiao, Wei
Miao, Chang
Li, Rui
Xu, Guanli
Xin, Yu
Nie, Shuqing
Source :
Ceramics International. Jul2021, Vol. 47 Issue 14, p19945-19954. 10p.
Publication Year :
2021

Abstract

Homogenous ultra-fine SnO 2 /TiO 2 particles encapsulated into carbon nanofibers (SnO 2 /TiO 2 @CNFs) with a uniform and ordered one-dimensional fibrous structure are fabricated through facile electrospinning technique and subsequent heat treatments, which are confirmed by XRD, Raman, TG, SEM, TEM, and XPS analyses. The battery performance reveals that the SnO 2 /TiO 2 @CNFs-1.5:1 (1.5:1 denotes the mole ratio of SnO 2 to TiO 2 in the carbon nanofibers) electrode displays the optimal electrochemical properties among the whole samples, which can deliver the initial charge and discharge specific capacity of 1061.2 and 1494.8 mAh/g with a coulombic efficiency of 71.0% at 100 mA/g, and exhibit a remarkable specific capacity of 766.1 mAh/g after 200 cycles. Moreover, the SnO 2 /TiO 2 @CNFs-1.5:1 electrode displays a high pseudocapacitive contribution of 73.9% at the scan rate of 2 mV/s and the lithium ion diffusion coefficient of approximately 1.20 × 10āˆ’15 cm2 sāˆ’1. The excellent electrochemical performance of the SnO 2 /TiO 2 @CNFs-1.5:1 electrode is closely correlated with the synergetic effect of the proper amount of TiO 2 that enhances the electrochemical stability of the electrode and provides fractional capacity, and the flexible and conductive carbon nanofiber matrix that accommodates volume changes and increases overall electronic conductivity. The detailed investigations of the as-prepared electrode materials by a facile electrospinning process may pave possible instructions for the next generation SnO 2 -based anodes and other related electrospun anodes for the energy storage device. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02728842
Volume :
47
Issue :
14
Database :
Academic Search Index
Journal :
Ceramics International
Publication Type :
Academic Journal
Accession number :
150931089
Full Text :
https://doi.org/10.1016/j.ceramint.2021.03.329