应用化学 ›› 2010, Vol. 27 ›› Issue (12): 1424-1429.DOI: 10.3724/SP.J.1095.2010.00041

• 研究论文 • 上一篇    下一篇

应用于锌-空气电池的新型碳载钴-聚噻吩复合催化剂

孙新阳,周德璧*,吕董,谭龙辉,赵伟利   

  1. (中南大学化学化工学院 长沙 410083)
  • 收稿日期:2010-01-19 修回日期:2010-03-08 出版日期:2010-12-10 发布日期:2010-12-10
  • 通讯作者: 周德璧,男,教授,博士生导师; E-mail:zhoudb@mail.csu.edu.cn; 研究方向:电化学

Application of Novel Carbon-supported Cobalt Polythiophene Composite Catalysts in Zinc-air Cell

SUN Xin-Yang, ZHOU De-Bi*, LV Dong, TAN Long-Hui, ZHAO Wei-Li   

  1. (College of Chemistry & Chemical Engineering,Central South University,Changsha  410083)
  • Received:2010-01-19 Revised:2010-03-08 Published:2010-12-10 Online:2010-12-10

摘要:

采用化学氧化聚合法合成了以碳为载体的钴-聚噻吩复合物(Co-PTh/C)作为气体扩散电极氧还原催化剂。 通过扫描电子显微镜-能量色散X射线能谱(SEM-EDX)、透射电子显微镜(TEM)等测试技术对催化剂进行表征。 结果表明,Co-PTh/C催化剂颗粒的粒径为10~30 nm,且分布均匀。 利用极化曲线、交流阻抗等电化学方法测试了其在碱性介质中(6 mol/L KOH)对氧还原的催化性能。 此催化剂在碱性介质中空气气氛条件下,电极电位在-0.20 V(vs.Hg/HgO)时电流密度达到0.152 A/cm2,催化性能高于质量分数5%Pt/C,显示出优越的氧还原电催化性能。 采取催化层/集流体/扩散层的排布方式,以纯锌为负极,6 mol/L的KOH为电解液,将气体扩散电极与锌负极组装成锌-空气电池。 电池以0.075 A/cm2进行恒流放电,放电电压为1.1 V且性能稳定。

关键词: 聚噻吩, 氧还原, 气体扩散电极, 电流密度

Abstract:

Cobalt/polythiophene/carbon black composite catalysts(Co-PTh/C) were firstly synthesized by an oxidative chemical polymerization and then were tested as a reduction reagent in the gas diffusion electrode of zinc-air cells. The asprepared catalysts were characterized by means of SEM-EDX and TEM techniques, which showed that they dispersed uniformly and had a size range of 10 to 30 nm. The catalytic activity of the products towards ORR(oxygen reduction reaction) in a 6 mol/L KOH aqueous solution was evaluated by cathodic polarization curves(LSV) and electrochemical impedance spectroscopy(EIS). A current density of 0.152 A/cm2 at -0.20 V(vs.Hg/HgO) could be achieved on the electrode with CoPTh/C as catalyst, which is superior to 5%Pt/C. Using this electrode as a positive electrode and pure zinc as a negative electrode, a zinc-air cell could be assembled. The cell showed a stable voltage platform of 1.1 V with a constant current density of 0.075 A/cm2 when discharged in a 6.0 mol/L KOH solution.

Key words: polythiophene, Oxygen reduction, gas diffusion electrode,, current density

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