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Casting amorphorized SnO2/MoO3 hybrid into foam-like carbon nanoflakes towards high-performance pseudocapacitive lithium storage.

Authors :
Wang, Hongkang
Xie, Sanmu
Yao, Tianhao
Wang, Jinkai
She, Yiyi
Shi, Jian-Wen
Shan, Guangcun
Zhang, Qiaobao
Han, Xiaogang
Leung, Micheal KH
Source :
Journal of Colloid & Interface Science. Jul2019, Vol. 547, p299-308. 10p.
Publication Year :
2019

Abstract

We report an amorphorization-hybridization strategy to enhance lithium storage by casting atomically mixed amorphorized SnO 2 /MoO 3 into porous foam-like carbon nanoflakes (denote as SnO 2 /MoO 3 @CNFs, or SMC in short), which are simply prepared by annealing tin(II)/molybdenum(IV) 2-ethylhexanoate within CNFs under ambient atmosphere at a low temperature (300 °C). The SnO 2 /MoO 3 loading amount within CNFs can be easily adjusted by controlling the Sn/Mo/C precursors. When examined as lithium ion battery (LIB) anode materials, the amorphorized SnO 2 /MoO 3 @CNFs with carbon content of 32 wt% (also denote as SMC-32, in which the number represents the carbon content) deliver a high reversible capacity of 1120.5 mA h/g after 200 cycles at 200 mA/g and then 651.5 mA h/g after another 300 cycles at 2000 mA/g, which is much better than that of the crystalline SnO 2 /CNFs (carbon content of 34 wt%), MoO 3 /CNFs (carbon content of 22.7 wt%), or SnO 2 /MoO 3 @CNFs (with lower carbon contents of 11 and 25 wt%). The electrochemical measurements as well as the ex situ structure characterization clearly suggest that combination of amorphorization and hybridization of SnO 2 /MoO 3 with CNFs synergistically contributes to the superior lithium storage performance with high pseudocapacitive contribution. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00219797
Volume :
547
Database :
Academic Search Index
Journal :
Journal of Colloid & Interface Science
Publication Type :
Academic Journal
Accession number :
136016633
Full Text :
https://doi.org/10.1016/j.jcis.2019.03.108