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Charge-discharge process of MnO2 supercapacitor

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【作者】 刘开宇张莹张伟郑禾苏耿

【Author】 LIU Kai-yu1, 2, ZHANG Ying1, ZHANG Wei1, ZHENG He 1, SU Geng1 1. School of Chemistry and Chemical Engineering, Central South University, Changsha 410083, China; 2. State Key Laboratory of Powder Metallurgy, Ce ntral South University, Changsha 410083, China

【机构】 School of Chemistry and Chemical Engineering Central South UniversitySchool of Chemistry and Chemical Engineering Central South UniversityChangsha 410083 China State Key Laboratory of Powder Metallurgy Ce ntral South University Changsha 410083 ChinaChangsha 410083 China

【摘要】 Mechanochemical synthesis of α-MnO2 was carried out with KMnO4 and Mn(CH3COO)2 in 1:1 mole ratio. The electrochemical performance of MnO2 electrode was investigated by cyclic voltammograms and alternating current impedance. The charge-discharge process of MnO2 supercapacitor in 6 mol/L KOH was studied within 1.2 V at 200 mA/g, suggesting that it displays double-layer capacibility in low potential scope and pseudo-capacitance properties in high potential scope. It is found that Mn3O4, an electrochemical inert, mainly forms in the initial 40 charge-discharge cycles. During cycling, the pseudo-capacitance properties disappear and the discharge curves are close to ideal ones, indicating double-layer capability. The maximum capacitance of MnO2 electrode is as high as 416 F/g, and retains 240 F/g after 200 cycles. The equivalent series resistance increases from 17 to 41 Ω.

【Abstract】 Mechanochemical synthesis of α-MnO2 was carried out with KMnO4 and Mn(CH3COO)2 in 1:1 mole ratio. The electrochemical performance of MnO2 electrode was investigated by cyclic voltammograms and alternating current impedance. The charge-discharge process of MnO2 supercapacitor in 6 mol/L KOH was studied within 1.2 V at 200 mA/g, suggesting that it displays double-layer capacibility in low potential scope and pseudo-capacitance properties in high potential scope. It is found that Mn3O4, an electrochemical inert, mainly forms in the initial 40 charge-discharge cycles. During cycling, the pseudo-capacitance properties disappear and the discharge curves are close to ideal ones, indicating double-layer capability. The maximum capacitance of MnO2 electrode is as high as 416 F/g, and retains 240 F/g after 200 cycles. The equivalent series resistance increases from 17 to 41 Ω.

  • 【文献出处】 Transactions of Nonferrous Metals Society of China ,中国有色金属学会会刊(英文版) , 编辑部邮箱 ,2007年03期
  • 【分类号】TM26
  • 【被引频次】31
  • 【下载频次】126
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