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Simple synthesis of amorphous NiWO4 nanostructure and its application as a novel cathode material for asymmetric supercapacitors. | LitMetric

AI Article Synopsis

  • The study presents a straightforward method to synthesize amorphous nickel tungstate (NiWO4) nanostructures, which are tested for use as a cathode material in supercapacitors.
  • Synthesis at a temperature of 70 °C results in the highest specific capacitance of 586.2 F g(-1), with the NiW-70 being used in a supercapacitor configuration for better energy density.
  • The NiW-70/activated carbon asymmetric supercapacitor achieves a maximum energy density of 25.3 Wh kg(-1) and shows impressive durability, retaining 91.4% of its specific capacitance after 5000 cycles.

Article Abstract

This study reports a simple synthesis of amorphous nickel tungstate (NiWO4) nanostructure and its application as a novel cathode material for supercapacitors. The effect of reaction temperature on the electrochemical properties of the NiWO4 electrode was studied, and results demonstrate that the material synthesized at 70 °C (NiW-70) has shown the highest specific capacitance of 586.2 F g(-1) at 0.5 A g(-1) in a three-electrode system. To achieve a high energy density, a NiW-70//activated carbon asymmetric supercapacitor is successfully assembled by use of NiW-70 and activated carbon as the cathode and anode, respectively, and then, its electrochemical performance is characterized by cyclic voltammetry and galvanostatic charge-discharge measurements. The results show that the assembled asymmetric supercapacitor can be cycled reversibly between 0 and 1.6 V with a high specific capacitance of 71.1 F g(-1) at 0.25 A g(-1), which can deliver a maximum energy density of 25.3 Wh kg(-1) at a power density of 200 W kg(-1). Furthermore, this asymmetric supercapacitor also presented an excellent, long cycle life along with 91.4% specific capacitance being retained after 5000 consecutive times of cycling.

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Source
http://dx.doi.org/10.1021/am402127uDOI Listing

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