Wire type supercapacitors with high energy and power densities have generated considerable interest in wearable applications. Herein, we report a novel NiCoS-decorated 3D, porous Ni film@Ni wire electrode for high performance supercapacitor application. In this work, a facile method is introduced to fabricate a 3D, porous Ni film deposited on a Ni wire as a flexible electrode, followed by decoration with NiCoS as an electroactive material. The fabricated NiCoS-decorated 3D, porous Ni film@Ni wire electrode displays a superior performance with an areal and volumetric capacitance of 1.228 F cm and 199.74 F cm, respectively, at a current density of 0.2 mA cm with a maximum volumetric energy and power density (E: 6.935 mW h cm; P: 1.019 W cm). Finally, the solid state asymmetric wire type supercapacitor is fabricated using the fabricated NiCoS-decorated 3D, porous Ni film@Ni wire as a positive electrode and N-doped reduced graphene oxide (N-rGO) as a negative electrode and this exhibits good areal and volumetric capacitances of C: 0.12 F cm and C: 19.57 F cm with a higher rate capability (92%). This asymmetric wire type supercapacitor demonstrates a low leakage current and self-discharge with a maximum volumetric energy (E: 5.33 mW h cm) and power (P: 855.69 mW cm) density.
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http://dx.doi.org/10.1039/c7nr06725a | DOI Listing |
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