首页|(162861)Novel combination of nickel-cobalt sulfide and oxide derived from Ni_2CoS_4@ZIF-67 for high performance supercapacitor

(162861)Novel combination of nickel-cobalt sulfide and oxide derived from Ni_2CoS_4@ZIF-67 for high performance supercapacitor

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As inspired by the surging demand for high performance energy storage systems, researchers have been designing and exploring advanced electrode materials exhibiting higher energy and power densities. In this study, a novel combination of nickel-cobalt sulfide and oxide was reported for high performance super-capacitors. The porous α-Ni(Co)S@NiCoO_2 composites with core-shell structure were derived from the well-designed precursor with Ni_2CoS_4 and ZIF-67 serving as the self-sacrificing templates through a two-step calcination process at elevated temperatures. Such a heterostructure exhibited an ultra-high specific capacity of 502.4 mA h g~(-1) at a current density of 1 A g~(-1), which was attributed to the unique porous core-shell structure and the ingenious combination of bimetallic sulfide and oxide. Furthermore, a hybrid supercapacitor based on the α-Ni(Co)S@NiCoO_2 composite and commercial activated carbon achieved a high energy density of 82.4 Wh kg~(-1) at a power density of 847.5 W kg~(-1). The prominent electrochemical performance exhibited by the α-Ni(Co)S@NiCoO_2 heterostructure in this study was demonstrated to be promising to practically serve as advanced electrode materials in supercapacitors.

Core-shell structureMetal-organic frameworka-NiS@NiCoO_2 Supercapacitor

Lixiang Xie、Mingjie Li、Peng Zhu

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Department of Physics, School of Science, Lanzhou University of Technology, Lanzhou 730050, PR China

2022

Journal of Alloys and Compounds

Journal of Alloys and Compounds

EISCI
ISSN:0925-8388
年,卷(期):2022.898
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