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Transformation of wheat husk to 3D activated carbon/NiCo_2S_4 frameworks for high-rate asymmetrical supercapacitors

机译:小麦壳与3D活性炭/ Nico_2S_4高速率不对称超级电容器的框架

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摘要

Transforming carbon-containing biomass into valuable carbon materials is highly required. The approach reduces not only environmental pollution but also develops porous carbon electrodes for energy storage devices. Herein, a novel ex-situ synthesis of Nickel-Cobalt Sulfide/Wheat Husk Activated Carbon (NiCo2S4/WHAC) on Ni foam as an electrode material for supercapacitors was reported. The activated carbon was synthesized from the carbonization of the wheat husk, which was further activated using KOH. Afterward, the NiCo2S4/WHAC/Ni electrode was fabricated by the hydrothermal method. The capacitance of the NiCo2S4/WHAC/Ni electrode was 1962 F/g at a current density of 1 A/g. The improved electrochemical performance of NiCo2S4/WHAC electrode could be ascribed to rapid diffusion pathways delivered by WHAC and the fast redox reaction of NiCo2S4. Furthermore, the asymmetric supercapacitor device (NiCo2S4//WHAC) could operate at a potential window of 1.1 V and exhibited a capacitance of 252 F/g, which could provide specific energy of 42 Wh/kg at a specific power of 550 W/kg with 108% capacity retention.
机译:非常需要将含碳生物质转化为有价值的碳材料。该方法不仅减少了环境污染,而且还减少了用于能量存储装置的多孔碳电极。这里,报道了作为超级电容器的电极材料的Ni泡沫镍钴硫化物/小麦壳体活性炭(NicO2S4 / Whac)的新型脱脂合成。从小麦壳的碳化合成活性炭,使用KOH进一步活化。之后,通过水热法制造NiCO2S4 / WHAC / Ni电极。 NicO2S4 / WHAC / Ni电极的电容为1962f / g,电流密度为1 a / g。 NicO2S4 / WHAC电极的改善的电化学性能可以归因于WHAC和NicO 2 S 4的快速氧化还原反应的快速扩散途径。此外,非对称超级电容器装置(Nico2S4 // WHAC)可以在1.1V的潜在窗口下操作,并表现出252 f / g的电容,其可以在550W / kg的特定功率下提供42WH / kg的特定能量保留108%的容量保留。

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