锂离子电容器是具有高能量密度和高功率密度的新型储能器件,已成为国内外学者研究的重要课题.阐述了锂离子电容器的工作原理及其在国内外的发展状况,并分析了其产业的发展情况和存在的问题.最后展望了锂离子电容器今后的研究方向.
参考文献
[1] | 张熙贵;王涛;夏保佳 .一种优秀的储能器件-超级电容器[J].世界产品与技术,2003,9(08):40. |
[2] | 周向阳,娄世菊,杨娟,刘宏专,邹幽兰.超级电容电池用炭类负极材料的研究进展[J].材料导报,2010(13):6-9. |
[3] | Elzbieta Frackowiak;Francois Beguin .Carbon materials for the electrochemical storage of energy in capacitors[J].Carbon: An International Journal Sponsored by the American Carbon Society,2001(6):937-950. |
[4] | Endo M.;Nishimura K.;Fujino T.;Miyashita K.;Kim C. .Recent development of carbon materials for Li ion batteries[J].Carbon: An International Journal Sponsored by the American Carbon Society,2000(2):183-197. |
[5] | Tarascon J M;Armand M .Issues and challenges facing rechargeable lithium batteries[J].Nature,2001,414(6861):359. |
[6] | Scrosati B .Lithium rocking chair batteries:An old concept[J].Journal of the Electrochemical Society,1992,139(10):2776. |
[7] | Aurbach D;Ein-Eli Y;Chusid O et al.Correlation between the surface chemistry and performance of lithium carbon intercalation anodes for rechargeable "Rocking Chair" type batteries[J].Journal of the Electrochemical Society,1994,141(03):601. |
[8] | 张娜,张宝宏.电化学超级电容器研究进展[J].电池,2003(05):330-332. |
[9] | 邓梅根.电化学电容器电极材料研究[M].合肥:中国科学技术大学出版社,2009:7. |
[10] | Sparnaay M J.The electric double layer[M].Sydney:Pergamon Press Pry.Ltd,1972:4. |
[11] | Matumoto M.Electrical phenomena at interfaces:Fundamentals,measures and application.Vol.76,Surfactant science series[M].New York,USA:Marcel Dekker,Inc,1998:87. |
[12] | 杨娟 .超级电容电池用炭类负极材料制备及性能研究[D].中南大学,2010. |
[13] | Hatozaki O.Lithium ion capacitor(LIC)[A].Deerfield Beach,2006:241. |
[14] | Hiromoto T;Nobuo A;Hideki S et al.Lithium ion capacitor[P].JP,WO2007055358,2007-05-18. |
[15] | 狩集浩志 .富士重工业公开锂离子电容器技术[EB/OL].http://china.nikkeibp.com.cn/news/elec/26074-200508220120.html,2005-08-22. |
[16] | Wang HY;Yoshio M .Graphite, a suitable positive electrode material for high-energy electrochemical capacitors[J].Electrochemistry communications,2006(9):1481-1486. |
[17] | Hongyu Wang;Masaki Yoshio .Performance of AC/graphite capacitors at high weight ratios of AC/graphite[J].Journal of Power Sources,2008(2):681-684. |
[18] | M. Yoshio;H. Nakamura;H. Wang .Novel Megalo-Capacitance Capacitor Based on Graphitic Carbon Cathode[J].Electrochemical and solid-state letters,2006(12):A561-A563. |
[19] | 狩集浩志 .FDK开发出可在高温环境下连续使用的大容量电容[EB/OL].http://china.nikkeibp.com.cn/news/ elec/ 3781-200709260117.html,2007-09-26. |
[20] | 日立AIC展出开发中的锂离子电容器[EB/OL].http://china.nikkeibp.com.cn/news/elec/6099-200710120119.html,2007-10-12. |
[21] | 吉田胜 .锂离子电容器竞相展出,NEC东金首次参战[EB/OL].http://china.nikkeibp.com.cn/news/elec/10667-200810080132.html,2008-10-08. |
[22] | 狩集浩志 .新神户电机展示锂离子电容器,瞄准建筑及产业设备应用[EB/OL].http://china.nikkeibp.com.cn/news/elec/49810-20100125.html,2010-01-26. |
[23] | 宇野麻由子 .NEC东金开发出层压型锂离子电容器[EB/OL].http://china.nikkeibp.corn.cn/news/econ/38549-200810090137.html,2008-10-09. |
[24] | V. Khomenko;E. Raymundo-Pinero;F. Beguin .High-energy density graphite/AC capacitor in organic electrolyte[J].Journal of Power Sources,2008(2):643-651. |
[25] | Yoshino H .Hybrid (asymmetric) capacitor[J].Electrochemistry,2004,72(10):716. |
[26] | 吉田胜 .JM Energy开发出新型锂离子电容器,内部电阻为原来的1/3[EB/OL].http://china.nikkeibp.corn.cn/news/elec/55242-20110216.html,2011-02-17. |
[27] | Kurzweil P .Electroehemical double-layer capacitors:Carbon materials[J].Encyclopedia Electrochem Power Sources,2009,30:634. |
[28] | Inagaki M;Konno M;Tanaike M .Carbon materials for electrochemical capacitors[J].Journal of Power Sources,2010,195:7880. |
[29] | 刘国阳,周安宁.超级电容器炭基电极材料研究进展[J].炭素,2006(04):27-30,26. |
[30] | A. G. Pandolfe;A. F. Hollenkamp .Carbon properties and their role in supercapacitors[J].Journal of Power Sources,2006(1):11-27. |
[31] | 孟庆函,刘玲,宋怀河,凌立成.炭气凝胶为电极的超级电容器的研究[J].功能材料,2004(04):457-459. |
[32] | Schmitt C.;Fricke J.;Probstle H. .Carbon cloth-reinforced and activated aerogel films for supercapacitors[J].Journal of Non-Crystalline Solids: A Journal Devoted to Oxide, Halide, Chalcogenide and Metallic Glasses, Amorphous Semiconductors, Non-Crystalline Films, Glass-Ceramics and Glassy Composites,2001(1/3):277-282. |
[33] | 徐斌,吴锋,苏岳锋,曹高萍,陈实,杨裕生.活性碳纳米管的制备及其在有机电解液中的电容性能研究[J].化学学报,2007(21):2387-2392. |
[34] | Yoshiyuki Show;Kentaro Imaizumi .Decrease in equivalent series resistance of electric double-layer capacitor by addition of carbon nanotube into the activated carbon electrode[J].Diamond and Related Materials,2006(11/12):2086-2089. |
[35] | 牛强,张孝彬,程继鹏,刘芙,周胜名,聂安民,谭俊军,崔白雪,周丽娜.多孔纳米碳纤维的制备及其在超级电容器中的应用研究[J].功能材料,2009(02):314-316,321. |
[36] | 朱春野,曹高萍.纳米门炭及纳米门电容器[J].新型炭材料,2005(04):380-381. |
[37] | 郭永兴 .锂离子动力电池制造关键技术基础及其安全性研究[D].中南大学,2010. |
[38] | 王金才,李峰,刘畅,李洪锡.锂离子电池碳负极材料的研究现状与发展[J].腐蚀科学与防护技术,2004(05):300-303. |
[39] | Fujimoto M .Electrochemical behavior of carbon electrodes in some electrolyte solutions[J].Journal of Power Sources,1996,63:127. |
[40] | Geun-Chang Chnng;Hynug-Jin Kim .Origin of Graphite Exfoliation An Investigation of the Important Role of Solvent Cointercalation[J].Journal of the Electrochemical Society,2000(12):4391-4398. |
[41] | 钟俊辉 .锂离子电池蓄电池阳极热解碳材料的研究进展[J].电源技术,1998,22(01):40. |
[42] | Eineli Y.;Koch VR. .CHEMICAL OXIDATION - A ROUTE TO ENHANCED CAPACITY IN LI-ION GRAPHITE ANODES[J].Journal of the Electrochemical Society,1997(9):2968-2973. |
[43] | 何明,刘旋,陈湘彪,康飞宇,沈万慈.树脂碳包覆微晶石墨的制备及其电化学性能[J].电池,2003(05):281-284. |
[44] | 俞政洪,吴锋.锂离子电池炭负极材料的研究--包覆对天然石墨容量衰减的影响[J].新型炭材料,2002(04):29-32,37. |
[45] | Horiba T;Maeshima T;Matsumura T et al.Applications of high power density lithium ion batteries[J].Journal of Power Sources,2005,146(1-2):107. |
[46] | K.C. Divya;Jacob Ostergaard .Battery Energy Storage Technology For Power Systems-an Overview[J].Electric Power Systems Research,2009(4):511-520. |
[47] | 尹鸽平,周德瑞,王庆.锂离子电池碳负极材料的结构与嵌锂行为[J].炭素,1999(04):31-36. |
[48] | 章颂云,宋怀河,陈晓红.中间相沥青炭微球的嵌锂模型[J].电源技术,2002(03):176-179,190. |
[49] | 程有亮,李铁虎,李凤娟,庄强,经德齐,赵廷凯.硅油/煤沥青乳液制备中间相炭微球[J].材料工程,2010(03):56-59. |
[50] | 经德齐,李铁虎,李昊,方长青,李晓婷,张政权.添加剂对中间相沥青炭微球形成的影响[J].功能材料,2008(07):1234-1236. |
[51] | 李泽胜,李庆余,王红强,林琳,钟新仙.活性中间相碳微球在不同电解液中电化学性能[J].电源技术,2010(05):483-486. |
[52] | 郭春雨,王成扬,时志强.活性中间相炭微球在超级电容器中的应用[J].电源技术,2007(03):179-182,190. |
[53] | 翟秀静;高虹.新型二次电池材料[M].沈阳:东北大学出版社,2003 |
[54] | 孙颢,蒲薇华,何向明,李建军,姜长印,万春荣.锂离子电池硬碳负极材料研究进展[J].化工新型材料,2005(11):7-10. |
[55] | 蓬田宏树 .太阳诱电展出锂离子电容器充电1分钟即可驱动机器人[EB/OL].http://china.nikkeibp.com.cn/news/elec/16447-200710040113.html,2007-10-04. |
[56] | 蓬田宏树;硅谷支局 .富士重工公开开发中的混合动力车蓄电技术[EB/OL].http://china.nikkeibp.com.cn/news/auto/2859-200507210105.html,2005-07-21. |
[57] | Katsuhiko Naoi .High-rate nano-crystalline Li_4Ti_5O_(12) attached on carbon nano-fibers for hybrid supercapacitors[J].Journal of Power Sources,2010(18):6250. |
[58] | 狩集浩志 .东京农工大学开发出单层碳纳米管与钛酸锂复合而成的锂离子电容器[EB/OL].http://china.nikkeibp.cor.cn/news/elec/50989-20100413.html,2010-04-14. |
[59] | 狩集浩志;吉田膀 .大容量锂离子电容器走向实用[EB/OL].http://big5.nikkeibp.com.cn/news/elec/45001-20090228.html,2009-03-04. |
[60] | 中部电力开发出锂离子电容器式短时间停电补偿装置并开始试验[EB/OL].http://china.nikkeibp.com.cn/eco/news/cattechnicalsj/2052-20120126.html,2012-01-29. |
[61] | 铃木靖生 .混合动力车用锂离子电容器的开关(一):高电压、大容量、安全性高[EB/OL].http://big5.nikkeibp.com.cn/news/auto/57043-20110701.html,2011-07-14. |
[62] | 铃木靖生 .混合动力车用锂离子电容器的开关(完):最适合用于混合动力车[EB/OL].http://big5.nikkeibp.com.cn/cgi-bin/cgi-bin/news/auto/57046-20110701.html,2011-07-20. |
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