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Constructing a charged-state Na-NiCl2 battery with NiCl2/graphene aerogel composite as cathode.

Authors :
Li, Yanpei
Shi, Lei
Gao, Xingpeng
Wang, Jingyi
Hu, Yingying
Wu, Xiangwei
Wen, Zhaoyin
Source :
Chemical Engineering Journal. Oct2021:Part 2, Vol. 421, pN.PAG-N.PAG. 1p.
Publication Year :
2021

Abstract

The charged-state NiCl 2 -rGO aerogel cathode shows superior cycle performance in Na-NiCl 2 batteries. [Display omitted] • Charged-state NiCl 2 -rGO aerogels are prepared by freeze-drying methods. • Conductive rGO aerogels effectively improve the performance of NiCl 2. • The molar ratio of Ni/NaCl can be reduced to the stoichiometric ratio (0.5). • The NiCl 2 -rGO aerogel cathode shows excellent electrochemical performance. The hierarchical nickel chloride/reduced graphene oxide (NiCl 2 -rGO) aerogels are synthesized via a facile hydrothermal and freeze-drying methods using low-cost nickel chloride hexahydrate (NiCl 2 ·6H 2 O) as raw material. The NiCl 2 -rGO hybrid aerogel structure enables the uniform distribution of lamellar NiCl 2 on the three-dimensional (3D) cross-linked conductive graphene sheets. When employed as cathode for sodium-nickel chloride (Na-NiCl 2) batteries, the as-obtained NiCl 2 -rGO aerogels exhibit excellent electrochemical performance with high reversible capacities (116 mAh g−1 after 50 cycles, 128 mAh g−1 in a fixed capacity window (20%–80% state of charge (SOC)) after 50 cycles), and a ultra-low polarization (0.05 V in the fixed capacity window). The outstanding performance of NiCl 2 -rGO aerogels can be attributed to the excellent conductivity of graphene. Moreover, the strong contact between NiCl 2 and graphene sheets can effectively promote the transfer of electrons. Compared with traditional tubular Na-NiCl 2 batteries, the molar ratio of Ni/NaCl of NiCl 2 -rGO aerogels can be decreased from 1.8 to the stoichiometric ratio (0.5). To the best of our knowledge, this work paves a perspective way for the first time to develop charged-state NiCl 2 -based cathodes with splendid performance for Na-NiCl 2 batteries. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
13858947
Volume :
421
Database :
Academic Search Index
Journal :
Chemical Engineering Journal
Publication Type :
Academic Journal
Accession number :
150874784
Full Text :
https://doi.org/10.1016/j.cej.2020.127853