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Electrochemical Introduction of Active Sites into Super-long Carbon Nanotubes for Enhanced Capacitance

Electrochemical Introduction of Active Sites into Super-long Carbon Nanotubes for Enhanced Capacitance
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摘要 Electrochemical cyclic voltammetric(CV) scan was applied to inducing the partial oxidation and defects of carbon nanotubes(CNTs).The electrochemically induced functional groups and physical defects were demonstrated to show positive effects on the nanotube capacitance,as exemplified by super-long CNT arrays as model for the easy fabrication of CNT electrodes.Specifically,the initial hydrophobic nanotube surface becomes hydrophilic and a ten-time enhancement in capacitance is observed with respect to the pristine CNT sample.Thus,the electrochemical CV pretreatment can be used as an effective approach to activate the CNT surface for an enhanced electrochemical performance in capacitors,and many other advanced devices beyond capacitors,such as electrochemical sensors and batteries. Electrochemical cyclic voltammetric(CV) scan was applied to inducing the partial oxidation and defects of carbon nanotubes(CNTs).The electrochemically induced functional groups and physical defects were demonstrated to show positive effects on the nanotube capacitance,as exemplified by super-long CNT arrays as model for the easy fabrication of CNT electrodes.Specifically,the initial hydrophobic nanotube surface becomes hydrophilic and a ten-time enhancement in capacitance is observed with respect to the pristine CNT sample.Thus,the electrochemical CV pretreatment can be used as an effective approach to activate the CNT surface for an enhanced electrochemical performance in capacitors,and many other advanced devices beyond capacitors,such as electrochemical sensors and batteries.
出处 《Chemical Research in Chinese Universities》 SCIE CAS CSCD 2012年第2期302-307,共6页 高等学校化学研究(英文版)
基金 Supported by the Scientific Research Foundation for the Returned Overseas Chinese Scholars,Ministry of Education of China(No.20100732002) the National Natural Science Foundation of China(No.21004006) the Research Foundation for the Doctoral Program of Higher Education of China(No.20101101120036) the 111 Project in China(No.B07012) the Program for the New Century Excellent Talents in Universities of China(No.NCET-10-0047)
关键词 Energy storage Electrochemical capacitor Super-long carbon nanotube ELECTROCHEMISTRY DEFECT Energy storage Electrochemical capacitor Super-long carbon nanotube Electrochemistry Defect
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