Performance of a combined capacitor based on ultrafine nickel oxide/carbon nanotubes composite elect

来源 :Journal of University of Science and Technology Beijing(Engl | 被引量 : 0次 | 上传用户:lkjall
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A new sol-gel process for the preparation of ultrafine nickel hydroxide electrode materials was developed. The composite electrodes consisting of carbon nanotubes and Ni(OH)2 were developed by mixing the hydroxide and carbon nanotubes together in different mass ratios. In order to enhance energy density, a combined type pseudocapacitor/electric double layer capacitor was considered and its electrochemical properties were characterized by cyclic voltammetry and dc charge/discharge test. The combined capacitor shows excellent capacitor behavior with an operating voltage up to 1.6 V in KOH aqueous electrolyte. Stable charge/discharge behaviors were observed with much higher specific capacitance values of 24 F/g compared with that of EDLC (12 F/g) by introducing 60% Ni(OH)2 in the anode material. By using the modified anode of a Ni(OH)2/carbon nanotubes composite electrode, the specific capacitance of the cell was less sensitive to discharge current density compared with that of the capacitor employing pure A new sol-gel process for the preparation of ultrafine nickel hydroxide electrode materials was developed. The composite electrodes consisting of carbon nanotubes and Ni (OH) 2 were developed by mixing the hydroxide and carbon nanotubes together in different mass ratios. energy density, a combined type pseudocapacitor / electric double layer capacitor was considered and its electrochemical properties were characterized by cyclic voltammetry and dc charge / discharge test. The combined capacitor shows excellent capacitor behavior with an operating voltage up to 1.6 V in KOH aqueous electrolyte. Stable charge / discharge behaviors were observed with much higher specific capacitance values ​​of 24 F / g compared with that of EDLC (12 F / g) by introducing 60% Ni (OH) 2 in the anode material. Ni (OH) 2 / carbon nanotubes composite electrode, the specific capacitance of the cell was less sensitive to discharge current density compared with that of the capaci tor employing pure
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