期刊文献+

基于电化学改性石墨电极构建钒/钛液流电池 被引量:1

V/Ti redox flow battery based on electrochemically modified graphite electrode
下载PDF
导出
摘要 在2.0 mol/L HClO_4溶液中通过恒电流阶跃方法制备了电化学改性石墨电极(MGE)。发现其在硫酸溶液中对V(Ⅳ)/V(Ⅴ)和Ti(Ⅲ)/Ti(Ⅳ)氧化还原反应具有良好的催化可逆性,并提出了受电位影响的电极表面含氧官能团电对与金属离子电对间的氧化还原协同作用机理。将V(Ⅳ)/V(Ⅴ)和Ti(Ⅲ)/Ti(Ⅳ)分别作为正、负极活性物质构建成氧化还原液流电池并评价其充放电性能。在10 mA/cm^2下恒流充放电,相应的电压效率为94.2%,能量效率达到91%,展示了基于MGE构建的钒/钛液流电池潜在的应用价值。 A graphite electrode was modified by galvanostatic step method in 2.0 mol/L HCIO4 solution. The electrochemically modified graphite electrode (MGE) shows high electrocatalytic activity and good reversible characteristics for V(IV)N(V) and Ti(III)/-ri(IV) in H2SO4solution. A synergetic mechanism between the redox reaction of surface oxygen-containing groups dependent on potential with that of V(IV)N(V) and Ti(III)/Ti(IV) was proposed. Then a V/Ti redox flow battery (RFB) using V(IV)N(V) as positive and Ti(III)/Ti(IV) as negative active materials was set up and its charge-discharge performance was tested. At the current density of 10 mA/cm2, the voltage efficiency is 94.2%, and the energy efficiency reaches 91%, therefore, it shows potential application value.
出处 《电源技术》 CAS CSCD 北大核心 2017年第5期723-726,共4页 Chinese Journal of Power Sources
基金 青岛市科技发展计划[12-1-4-1-(28)-jch 12-4-1-28-gx] 山东省博士基金(BS2011NJ019) 中央高校基础科研基金(201022006)
关键词 电化学改性石墨 氧化还原液流电池 电催化 electrochemically modified graphite redox flow battery vanadium titanium electrocatalysis
  • 相关文献

参考文献2

二级参考文献38

  • 1李强,李开喜,孙国华,范慧,谷建宇.一种新型氧化还原电解液电化学电容器体系[J].物理化学学报,2006,22(12):1445-1450. 被引量:8
  • 2Patrice, S.; Yury, G. Nature Materials 2008, 7, 845.
  • 3田昭武,董全峰,郑明森,林祖赓.基于液相中的电化学活性物质的超级电容器:中国,200610087625.1[P].2006-11-22.
  • 4Bae, C. H.; Roberts, E. P. L.; Dryfe, R. A. W. Electrochim. Acta 2002, 48, 279.
  • 5Moraw, F.; Fatih, K.; Wilkinson, D.; Girard, F. Adv. Mater. Res. 2007, 15-17, 315.
  • 6Hagg, C. M.; Skyllas-Kazacos, M. J. Appl. Electrochem. 2002, 32, 1063.
  • 7Qian, P.; Zhang, H. M.; Chen, J.; Wen, Y. H.; Luo, Q. T.; Liu, Z. H.; You, D. J.;Yi, B. L. J. Power Sources 2008, 175, 613.
  • 8Chen, P. H.; McCreery, R. L.Anal. Chem. 1996, 68, 3958.
  • 9Banks, C. E.; Davis, T. J.; Wildgoose, G. G.; Compton, R. G. Chem. Commun. 2005, 829.
  • 10McCreery, R. L. Electroanalytical Chemistry; Bard, A. J. Ed.; Dekker: New York, 1991; Vol. 17, pp 221-374.

共引文献5

同被引文献16

引证文献1

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部