化学学报 ›› 2008, Vol. 66 ›› Issue (6): 603-608. 上一篇    下一篇

研究论文

有序介孔碳CMK-3微波负载NiO及其电容性能研究

张传香, 何建平*, 周建华, 赵桂网, 陈秀, 王涛   

  1. (南京航空航天大学材料科学与技术学院 南京 210016)
  • 投稿日期:2007-08-20 修回日期:2007-10-31 发布日期:2008-03-28
  • 通讯作者: 何建平

Synthesis and Capacitance Properties of Ordered Mesoporous Carbon CMK-3 Supported Nickel Oxide by Microwave Method

ZHANG Chuan-Xiang; HE Jian-Ping*; ZHOU Jian-Hua; ZHAO Gui-Wang; CHEN Xiu; WANG Tao   

  1. (College of Material Science and Technology, Nanjing University of Aeronautics and Astronautics, Nanjing 210016)
  • Received:2007-08-20 Revised:2007-10-31 Published:2008-03-28
  • Contact: HE Jian-Ping

微波法负载具有简便、快速、均匀的优点. 本文尝试以乙二醇为还原剂, Ni(Ac)2为Ni源, 通过微波辐射负载及低温空气煅烧在CMK-3上形成NiO. 对样品进行X射线衍射(XRD)、透射电子显微镜(TEM)、N2吸脱附等结构表征及循环伏安(CV)等电化学性能测试. 结果显示, 微波法并经低温空气煅烧后有序介孔碳CMK-3的小角XRD峰强度变弱、比表面积下降、孔容减小, 但却使其比电容从229.3 F/g提高到295.9 F/g, 大于文献报导中介孔碳负载MnO2, RuO2xH2O后的比电容值. 由此说明微波法是有效的负载方法, 具有较好的应用前景.

关键词: 微波法, CMK-3, 负载, 比电容

The loading method of microwave irradiation, possesses advantages of simpleness, speediness and uniformity. Herein, we tried to synthesize ordered mesoporous carbon CMK-3 loading nickel nanoparticles by a microwave irradiation method, in which ethylene glycol was used as a reducer and Ni(OAc)2 as a origin of nickel, then the samples were calcined at low temperature converting to nickel oxide in an air furnace. X-ray diffraction (XRD), transmission electron microscopy and nitrogen adsorption were used to characterize the structure and cyclic voltammetry was utilized to test the electrochemical performance of the samples. The results indicated that microwave irradiation and calcination at low temperature made the small-angle XRD apex of CMK-3 weakened, specific surface area declined and pore volume reduced. The specific capacitance increased from 229.3 to 295.9 F/g, which is higher than the value of ordered mesoporous carbon loading MnO2, RuO2xH2O in some literatures. Consequently, the microwave synthesis is an effective loading method, and has promising application of foreground.

Key words: microwave method, CMK-3, loading, specific capacitance