Kong Menglai, Wang Zao, Wang Weiyi, Ma Min, Liu Danni, Hao Shuai, Kong Rongmei, Du Gu, Asiri Abdullah M, Yao Yadong, Sun Xuping
College of Materials Science and Engineering, Sichuan University, Chengdu, 610065, Sichuan, P. R. China.
College of Chemistry, Sichuan University, Chengdu, 610064, Sichuan, P. R. China.
Chemistry. 2017 Mar 28;23(18):4435-4441. doi: 10.1002/chem.201700017. Epub 2017 Mar 15.
High-performance supercapacitors require the design and development of electrode materials with high conductivity and a large electrolyte-accessible surface area. Here, the use of a conductive NiCoP nanoarray on nickel foam (NiCoP/NF) as a superior pseudocapacitor electrode is demonstrated. This 3D electrode exhibits high areal capacitances of 9.2 and 5.97 F cm at current densities of 2 and 50 mA cm , respectively, with good rate capability and cycling stability. The asymmetric supercapacitor (ASC) device assembled using NiCoP/NF as positive electrode and active carbon as negative electrode delivers a high energy density of 1.16 mWh cm at a power density of 1.6 mW cm with 72 % retention of its initial specific capacitance after 2000 cycles at 50 mA cm . The practical use is further demonstrated with two such ASC devices in series to light six LED indicators and also to drive an alkaline water electro- lyzer using NiCoP/NF as both cathode and anode for hydrogen production.
高性能超级电容器需要设计和开发具有高导电性和大电解质可及表面积的电极材料。在此,展示了在泡沫镍上使用导电NiCoP纳米阵列(NiCoP/NF)作为优异的赝电容电极。这种三维电极在电流密度分别为2和50 mA/cm²时,面积电容分别高达9.2和5.97 F/cm²,具有良好的倍率性能和循环稳定性。以NiCoP/NF为正极、活性炭为负极组装的不对称超级电容器(ASC)器件,在功率密度为1.6 mW/cm²时,能量密度高达1.16 mWh/cm²,在50 mA/cm²下循环2000次后,初始比电容保留72%。通过将两个这样的ASC器件串联以点亮六个LED指示灯,并使用NiCoP/NF作为阴极和阳极驱动碱性水电解槽制氢,进一步证明了其实际应用价值。