[1] LIU S,SUN S H,YOU X Z. Inorganic nanostructured materials for high performance electrochemical supercapacitors[J]. Nanoscale,2014,6:2037-2045.
[2] GONZÁLEZ A,GOIKOLEA E,BARRENA J A,et al. Review on supercapacitors:Technologies and materials[J]. Renewable and Sustainable Energy Reviews,2016,58:1189-1206.
[3] ANDREW Burke. Ultracapacitors:Why, how, and where is the technology[J]. Journal of Power Sources,2000,91:37-50.
[4] 陈宽,阮殿波,傅冠生. 轨道交通用超级电容器研发概述[J]. 电池,2014,44:296-298.
CHEN K,RUAN D B,FU G S. Research and development summary of supercapacitor used in rail transit[J]. Battery Bimonthly,2014,44:296-298.
[5] WANG Y G,XIA Y Y. Recent progress in supercapacitors:From materials design to system construction[J]. Advanced Materials,2013,25:5336-5342.
[6] ZHAO B,RAN R,LIU M L,et al. A comprehensive review of Li4Ti5O12-based electrodes for lithium-ion batteries:The latest advancements and future perspectives[J]. Materials Science and Engineering R-Reports,2015,98:1-71.
[7] NAOI K,TAKEO W N,KAMINO,et al. New generation “nanohybrid supercapacitor”[J]. Acc. Chem. Res.,2013,46:1075-1083.
[8] NAOI K,ISHIMOTO S,MIYAMOTO J I,et al. Second generation ‘nanohybrid supercapacitor’:Evolution of capacitive energy storage devices[J]. Energy & Environmental Science,2012,5:9363-9373.
[9] 杨斌,傅冠生,阮殿波,等. Li4Ti5O12/AC非对称电容器的制备与性能[J]. 电池,2015,45:149-152.
YANG B,FU G S,RUAN D B,et al. Preparation and performance of Li4Ti5O12/AC asymmetric capacitor[J]. Battery Bimonthly,2015,45:149-152.
[10] 刘秋香,谭蕾,阮殿波,等. 混合电容器中导电剂对钛酸锂负极材料性能的影响[J]. 储能科学与技术,2016,5(4):509-513.
LIU Q X,TAN L,RUAN D B,et al. Effect of conductive additives on electrochemical performance of Li4Ti5O12 in hybrid capacitor[J]. Energy Storage Science and Technology,2016,5(4):509-513.
[11] 中华人民共和国国家发展和改革委员会. 车用超级电容器中(QC/T 741-2014)[S]. 北京:中国计划出版社,2014.
[12] JUNG J,JANG J Y,CHAE O B,et al. Reinforcement of an electrically conductive network with ethanol as a dispersing agent in the slurry preparation step[J]. Journal of Power Sources,2015,287:359-362.
[13] EULER K J,KIRCHHOF R,HAMMERSLEY J M. Electronic conductivity of battery active masses-a limiting factor?[J]. Journal of Power Sources,1980,5:255-262.
[14] AUSTIN L G,LERNER H. The mode of operation of porous diffusion electrodes-I. Simple redox systems[J]. Electrochimica Acta,1964,9:1469-1481.
[15] YE L,LIANG Q H,LEI Y. A high performance Li-ion capacitor constructed with Li4Ti5O12/C hybrid and porous graphene macroform[J]. Journal of Power Sources,2015,282:174-178. |