超级电容器关键材料制备及应用
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参 考 文 献

[1] 杨盛毅, 文方. 超级电容器综述[J]. 现代机械, 2009, 4: 82-84.

[2] CHIBA K, UEDA T, YAMAMOTO H. Performance of electrolyte composed of spiro-type quaternary ammonium salt and electric double-layer capacitor using it[J]. Electrochemistry, 2007, 75(8): 664-667.

[3] CHIBA K, UEDA T, YAMAMOTO H. Highly conductive electrolytic solution for electric double-layer capacitor using dimethylcarbonate and spiro-type quaternary ammonium salt[J]. Electrochemistry, 2007, 75(8): 668-671.

[4] NAOI K. ‘Nanohybrid capacitor’: the next generation electrochemical capacitors[J]. Fuel cells, 2010, 10(5): 825-833.

[5] JÄNES A, LUST E. Use of organic esters as co-solvents for electrical double layer capacitors with low temperature performance[J]. Journal of Electroanalytical Chemistry, 2006, 588(2): 285-295.

[6] BRANDON E J, WEST M C, SMART L D, et al. Extending the low temperature operational limit of double-layer capacitors[J]. Journal of Power Sources, 2007, 170(1): 225-232.

[7] KORENBLIT Y, KAJDOS A, WEST W C, et al. In situ studies of ion transport in microporous supercapacitor electrodes at ultralow temperatures[J]. Advanced Functional Materials, 2012, 22(8): 1655-1662.

[8] PERRICONE E, CHAMAS M, COINTEAUX L, et al. Investigation of methoxypropionitrile as co-solvent for ethylene carbonate based electrolyte in supercapacitors a safe and wide temperature range electrolyte[J]. Electrochimica Acta, 2013, 93: 1-7.

[9] 于学文. 层状炭材料的制备及离子插层特性研究[D]. 天津: 天津工业大学, 2013.

[10] REYNOLDS C. 超级电容器进展[J]. 今日电子, 2010, 1: 6-7.

[11] 田艳红, 付旭涛, 吴伯荣. 超级电容器用多孔碳材料的研究进展[J]. 电源技术, 2002, 26(6): 466-469.

[12] 陈英放, 李媛媛, 邓梅根. 超级电容器的原理及应用[J]. 电子元件与材料, 2008, 27(4): 6-9.