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Fabrication of 9.6 V High-performance Asymmetric Supercapacitors Stack Based on Nickel Hexacyanoferrate-derived Ni(OH)2 Nanosheets and Bio-derived Activated Carbon

机译:基于六氰基高铁酸镍(Ni(OH)2)纳米片和生物活性炭制备9.6 V高性能不对称超级电容器

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摘要

Hydrated Ni(OH)2 and activated carbon based electrodes are widely used in electrochemical applications. Here we report the fabrication of symmetric supercapacitors using Ni(OH)2 nanosheets and activated carbon as positive and negative electrodes in aqueous electrolyte, respectively. The asymmetric supercapacitors stack connected in series exhibited a stable device voltage of 9.6 V and delivered a stored high energy and power of 30 mWh and 1632 mW, respectively. The fabricated device shows an excellent electrochemical stability and high retention of 81% initial capacitance after 100,000 charge-discharges cycling at high charging current of 500 mA. The positive electrode material Ni(OH)2 nanosheets was prepared through chemical decomposition of nickel hexacyanoferrate complex. The XRD pattern revealed the high crystalline nature of Ni(OH)2 with an average crystallite size of ~10 nm. The nitrogen adsorption-desorption isotherms of Ni(OH)2 nanosheets indicate the formation of mesoporous Ni(OH)2 nanosheets. The chemical synthesis of Ni(OH)2 results the formation of hierarchical nanosheets that are randomly oriented which was confirmed by FE-SEM and HR-TEM analysis. The negative electrode, activated porous carbon (OPAA-700) was obtained from orange peel waste. The electrochemical properties of Ni(OH)2 nanosheets and OPAA-700 were studied and exhibit a high specific capacity of 1126 C/g and high specific capacitance of 311 F/g at current density of 2 A/g, respectively. Ni(OH)2 nanosheets delivered a good rate performance and remarkable capacitance retention of 96% at high current density of 32 A/g.
机译:水合的Ni(OH)2和活性炭基电极广泛用于电化学应用。在这里,我们报道了使用Ni(OH)2纳米片和活性炭分别作为水性电解质中的正电极和负电极制造对称超级电容器的方法。串联连接的非对称超级电容器堆叠具有9.6 V的稳定器件电压,并分别输送了30 mWh和1632 mW的存储高能量和功率。在500µmA的高充电电流下进行100,000次充放电循环后,制成的器件具有出色的电化学稳定性和81%初始电容的高保持率。通过六氰合铁酸镍配合物的化学分解制备了正极材料Ni(OH)2纳米片。 XRD图谱表明Ni(OH)2具有高结晶性质,平均晶粒尺寸约为10 nm。 Ni(OH)2纳米片的氮吸附-解吸等温线表明中孔Ni(OH)2纳米片的形成。 Ni(OH)2的化学合成导致形成随机取向的分层纳米片,这通过FE-SEM和HR-TEM分析得到证实。负极活性多孔碳(OPAA-700)从橙皮废料中获得。研究了Ni(OH)2纳米片和OPAA-700的电化学性能,在2 densityA / g的电流密度下分别具有1126 C / g的高比电容和311 F / g的高比电容。 Ni(OH)2纳米片在32 A / g的高电流密度下具有良好的速率性能和96%的出色电容保持率。

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