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Design and construction of hierarchical Ni3S2 @V-doped NiMn-LDH heterostructure on rGO/Ni foam as an advanced electrode for battery-supercapacitor hybrid devices.

Authors :
Zhang, Guohong
Yang, Jiale
Xuan, Haicheng
Yang, Jiangtao
Liang, Xiaohong
Li, Yuping
Han, Peide
Source :
Journal of Alloys & Compounds. Mar2022, Vol. 896, pN.PAG-N.PAG. 1p.
Publication Year :
2022

Abstract

• Hierarchical Ni 3 S 2 @NMV-L/rGO heterostructure was prepared by heteroatom doping and electrodeposition methods. • The influences of V doping content on the electrochemical performances of NMV-L/rGO composites were investigated. • The Ni 3 S 2 @NMV-L/rGO electrode exhibits excellent specific capacity of 1412.0 C g−1 at 1 A g−1. • The assembled battery-supercapacitor hybrid (BSH) device exhibits desirable energy density of 60.0 W h kg−1 at 849.1 W kg−1. [Display omitted] Transition metal dopant engineering and rational architecture design have been proven to be effective strategies to improve the electrochemical energy storage properties of electrodes. Herein, V-doped NiMn-layered double hydroxide composites were supported on reduced graphene oxide-coated Ni foam (NMV-L/rGO) by a hydrothermal method. The influences of V content on the electrochemical performances of NMV-L/rGO composites were investigated in detail. At an optimal content of V doping (15%), the NMV-L/rGO-15 reveals enhanced electrochemical properties, and it is subsequently applied as the substrate for the electrodeposition of Ni 3 S 2 layer. Benefiting from the collaborative effect of NMV-L/rGO-15, Ni 3 S 2 , and rGO materials, as well as the unique hierarchical architecture, excellent electrochemical performance is obtained in the as-prepared Ni 3 S 2 @NMV-L/rGO-15 composite, which exhibits a high specific capacity of 1412.0 C g−1 at 1 A g−1 as well as desirable long-term stability of 89% over 5000 cycles. Furthermore, the as-fabricated battery-supercapacitor hybrid device (BSH) based on Ni 3 S 2 @NMV-L/rGO-15 and activated carbon (AC) electrodes displays a remarkable energy density of 60.0 W h kg−1 at the power density of 849.1 W kg−1 and superior capacity retention of 96% through 7000 cycles. Such excellent results indicate that the Ni 3 S 2 @NMV-L/rGO-15 composite holds great potential as electrode material for high-performance BSHs. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09258388
Volume :
896
Database :
Academic Search Index
Journal :
Journal of Alloys & Compounds
Publication Type :
Academic Journal
Accession number :
154452399
Full Text :
https://doi.org/10.1016/j.jallcom.2021.163125