Pseudocapacitive-battery-like behavior of cobalt manganese nickel sulfide (CoMnNiS) nanosheets grown on Ni-foam by electrodeposition for realizing high capacity

通过电沉积法在镍泡沫上生长钴锰镍硫化物(CoMnNiS)纳米片,其表现出类似赝电容电池的行为,从而实现了高容量。

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Abstract

Hierarchical interconnected nanosheets (HIN) of cobalt manganese nickel sulfide (CoMnNiS) were synthesized on Ni foam by a simple and economical electrodeposition technique for energy storage application. Sulfonated thin nanosheets of Co, Mn and Ni provide stability of chemical activity, surface functionalization and surface reactivity to the electrode. The fabricated electrode shows a specific capacity of 257.4 mA h g(-1) (at 2.5 A g(-1)), measured by galvanostatic charging-discharging (GCD). Both diffusion and capacitive mechanisms in the sulfide layer contribute to the high electrical conductivity. Asymmetric devices CoMnNiS/NiCuO and CoMnNiS/CNT (CNT = carbon nanotubes) were fabricated, providing a maximum operating voltage of 1.7 V and 1 V, specific capacity of 20.8 and 50.8 mA h g(-1), and energy density of 8.4 and 6.3 W h kg(-1) corresponding to a power density of 985 and 211 W kg(-1), respectively, at a current density of 0.5 and 0.63 A g(-1). These results demonstrate a novel material for application in energy storage devices as an electrode.

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