Hierarchical ternary Ni-Co-Se nanowires for high-performance supercapacitor device design

Large-scale uniform Ni-Co-Se bimetallic ternary nanowires have been successfully synthesized through a successive cation exchange. First, NiSe nanowires in situ grown on nickel foam (NF) were prepared by a facile solvothermal route. Next, a series of ternary materials possessing different proportion...

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Veröffentlicht in:Dalton transactions : an international journal of inorganic chemistry 2016-01, Vol.45 (48), p.19458-19465
Hauptverfasser: Guo, Kailu, Cui, Shizhong, Hou, Hongwei, Chen, Weihua, Mi, Liwei
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Sprache:eng
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Zusammenfassung:Large-scale uniform Ni-Co-Se bimetallic ternary nanowires have been successfully synthesized through a successive cation exchange. First, NiSe nanowires in situ grown on nickel foam (NF) were prepared by a facile solvothermal route. Next, a series of ternary materials possessing different proportions of Ni and Co were fabricated by a Co-exchange method using the Ni@NiSe material as a template, which effectively achieved morphological inheritance from the parent material. To explore the electrochemical performance, all synthetic materials were assembled into asymmetric supercapacitor devices. Among asymmetric supercapacitor devices, the Ni@Ni Co Se//active carbon (AC) device exhibited a high specific capacitance of 86 F g at a current density of 1 A g and excellent cycling stability with virtually no decrease in capacitance after 2000 continuous charge-discharge cycles. This device still delivered an energy density of 17 Wh kg even at a high power density of 1526.8 W kg . These superior electrochemical properties of Ni@Ni Co Se as an electrode material for supercapacitor devices confirmed the synergistic effect between Co and Ni ions, suggesting their potential application in the field of energy storage.
ISSN:1477-9226
1477-9234
DOI:10.1039/C6DT03863H