全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
化学进展  2014 

钛酸锂基锂离子电池的析气特性

DOI: 10.7536/PC140720, PP. 1772-1780

Keywords: 钛酸锂,锂离子电池,析气,机理,措施

Full-Text   Cite this paper   Add to My Lib

Abstract:

目前商用锂离子电池主要使用碳负极材料.零应变的钛酸锂被认为是比碳更安全、寿命更长的负极材料,在混合电动汽车和风/光/电并网、智能电网等领域有独特的应用前景.但是,采用钛酸锂负极的锂离子电池在充放电及储存过程中极易发生气胀,从而导致外壳变形、电池向外析气、电池性能急剧下降等问题,这是制约钛酸锂实际应用的最大障碍.本文首先介绍了钛酸锂基锂离子电池的产业发展状况,其采用的正极材料分别为Li(NixCoyMn1-x-y)O2、LiMn2O4、LiFePO4与LiCoO2等四种.针对其气胀问题,从钛酸锂电极材料的界面特性、水分、电解液还原分解、负极电位、杂质等方面综述了相关的最新研究进展.同时结合本课题组的研究工作,从材料、工艺、使用等角度指出了气胀的改进措施,最后,提出钛酸锂基锂离子电池气胀方面亟待解决的问题及今后的研究重点.

References

[1]  张建(Zhang J), 颜剑(Yan J), 张熙贵(Zhang X G), 刘浩涵(Liu H H), 李佳(Li J), 夏保佳(Xia B J). CN 101414693A,2009.
[2]  苏剑(Su J), 李红兵(Li H B). 机车电传动(Electric Drive for locomotives), 2011, 4: 37.
[3]  王占国(Wang Z G), 龚敏明(Gong M M). 中国铁路(Chinese Railways), 2011, 12: 64.
[4]  He Y B, Li B H, Liu M, Zhang C, Lv W, Yang C, Li J, Du H D, Zhang B, Yang Q H, Kim J K, Kang F Y. Scientific Reports, 2012, 2: 1.
[5]  Takami N, Inagaki H, Tatebayashi Y, Saruwatari H, Honda K, Egusa S. J. Power Sources, 2013, 244: 469.
[6]  赵永胜(Zhao Y S), 韩恩山(Han E S), 黄金辉(Huang J H). 电池(Battery Bimonthly), 2011, 41(6): 322.
[7]  刘兴江(Liu X J), 杨凯(Yang K), 郭春雨(Guo C Y), 仁惠祺(Ren H Q).电源技术(Chin. J. Power Sources), 2009, 33(2): 109.
[8]  李燕(Li Y), 翟丽娟(Zhai L J), 秦兆东(Qin Z D), 刘志远(Liu Z Y), 朱广燕(Zhu G Y).新材料产业(Adv. Mater. Ind), 2010, 2: 70.
[9]  吴宁宁(Wu N N), 吴可(Wu K), 安富强(An F Q), 田文怀(Tian W H). 电源技术(Chin. J. Power Sources), 2012, 36(2): 175.
[10]  崔明(Cui M), 许汉良(Xu H L), 张帆(Zhang F), 郭付祥(Guo F X), 南俊民(Nan J M). In the 28th Annual Meeting on Power Sources, Journal of South China Normal University, 2009, 103.
[11]  冯祥明(Feng X M), 李璐(Li L), 张建民(Zhang J M), 杨长春(Yang C C). 电池(Battery Bimonthly), 2011, 41(2): 85.
[12]  朱希平(Zhu X P), 贺艳兵(He Y B).应用化工(Appl. Chem. Ind), 2012, 41(5): 884.
[13]  Demeaux J, Vito E D, Digabel M L, Galiano H, Montigny B C, Lemordant D. Phys. Chem. Chem. Phys., 2014, 16: 5201.
[14]  Song M S, Kim R H, Baek S W, Lee K S, Park K, Benayad A. J. Mater. Chem. A, 2014, 2: 631.
[15]  Kitta M, Akita T, Maeda Y, Kohyama M. Langmuir, 2012, 28: 12384.
[16]  Yu H Y, Zhang D, Zhu Z, Lu Q. J. Power Sources, 2014, 257: 96.
[17]  Gao Y R, Wang Z X, Chen L Q. J. Power Sources, 2014, 245: 684.
[18]  Jiang J W, Dahn J R. Electrochim. Acta, 2004, 49, 4599.
[19]  Yamaki J, Takatsuji H, Kawamura T, Egashira M. Solid State Ionics, 2002, 148: 241.
[20]  Snyder M Q, DeSisto W J, Tripp C P. Appl. Surf. Sci., 2007, 253: 9336.
[21]  Nakajima T, Ueno A, Achiha T, Ohzawa Y, Endo M J. Fluorine Chem., 2009, 130: 810.
[22]  Ding Z J, Zhao L, Suo L M, Jiao Y, Meng S, Hu Y S, Wang Z X, Chen L Q. Phys. Chem. Chem. Phys., 2011, 13: 15127.
[23]  Dedryvère R, Foix D, Franger S, Patoux S, Daniel L, Gonbeau D. J. Phys. Chem. C, 2010, 114: 10999.
[24]  Li S R, Chen C H, Xia X, Dahn J R. J. Electrochem. Soc., 2013, 160: A1524.
[25]  Wu K, Yang J, Liu Y, Zhang Y, Wang C Y, Xu J M, Ning F, Wang D Y. J. Power Sources, 2013, 237: 285.
[26]  Bernhard R, Meini S, Gasteiger H A. J. Electrochem. Soc., 2014, 161: A497.
[27]  Belharouak I, Koenig G M, Amine K. J. Power Sources, 2011, 196: 10344.
[28]  Borghols W J H, Hecht D L, Haake U, Chan W, Lafont U, Kelder E M, van Eck E R H, Kentgens A P M, Mulder F M, Wagemaker M J. Electrochem. Soc., 2010, 157: A582.
[29]  杨全生(Yang Q S),刘朋(Liu P). CN 101710623 A,2010.
[30]  吴可(Wu K), 王印萍(Wang Y P), 高雅(Gao Y), 雷向利(Lei X L), 吴宁宁(Wu N N), 王雅和(Wang Y H). CN102055020A,2011.
[31]  He Y B, Liu M, Huang Z D, Zhang B, Yu Y, Li B H, Kang F Y, Kim J K. J. Power Sources, 2013, 239: 269.
[32]  吴晓东(Wu X D). CN 101740816A,2010.
[33]  Tang B B X, Tan T, Bark D S. CN 101682028A,2010.
[34]  He Y B, Ning F, Li B H, Song Q S, Lv W, Du H D, Zhai D Y, Su F Y, Yang Q H, Kang F Y. J. Power Sources, 2012, 202, 253.
[35]  Scharner S, Weppner W, Beurmann P S. J. Electrochem. Soc., 1999,146: 857.
[36]  Ma J, Wang C, Wroblewski S. J. Power Sources, 2007, 164: 849.
[37]  Norio T, Hiroki I, Takashi K, Yasuhiro H, Yumi F, Keigo H. J. Electrochem. Soc., 2009, 156: A128.
[38]  Yi T F, Xie Y, Zhu Y R, Zhu R S, Shen H Y. J. Power Sources, 2013, 222: 448.
[39]  Belharouak I, Sun Y K, Lu W, Amine K. J. Electrochem. Soc., 2007, 154: A1083.
[40]  Imazaki M, Wang L, Kawai T, Ariyoshi K, Ohzuku T. Electrochim. Acta, 2011, 56: 4576.
[41]  Zaghib K, Dontigny M, Perret P, Guerfi A, Ramanathan M, Prakash J, Mauger A, Julien C M. J. Power Sources, 2014, 248: 1050.
[42]  Wu K, Yang J, Zhang Y, Wang C Y, Wang D Y. J Appl Electrochem., 2012, 42: 989.
[43]  Tetsuya Y, Eto K. Sakai H. US 6645673, 2003.
[44]  Spitler T, Prochazka J, Kavan L, Graetzel M, Sugnaux F. EP 1412993, 2009.
[45]  Kanda R, Yoshida K. JP 2012180251, 2012.
[46]  吴孟涛(Wu M T), 徐宁(Xu N), 肖彩英(Xiao C Y), 周大桥(Zhou D Q), 孟凡玉(Meng F Y), 黄来和(Huang L H). CN 101262078A,2008.
[47]  崔明(Cui M), 许汉良(Xu H L), 张帆(Zhang F), 黄赛先(Huang S X). CN 101582522A,2009.
[48]  吴晓东(Wu X D). CN 101710753A, 2010.
[49]  Shu J. Electrochem. Solid-State Lett., 2008, 11: A238.
[50]  Roth E P, Doughty D H, Franklin J. J. Power Sources, 2004, 134: 222.
[51]  Kitta M, Matsuda T, Maeda Y, Akita T, Tanaka S, Kido Y, Kohyama M. Surf. Sci., 2014, 619: 5.
[52]  Belharouak I, Koenig G M, Tan T, Yumoto H, Ota N, Amine K J. Electrochem. Soc., 2012, 159: A1165.
[53]  Khan S U M, Shahry M A, Ingler W B. Science, 2002, 297: 2243.
[54]  宁峰(Ning F). 清华大学硕士论文(Master Dissertation Thesis, Tsinghua University), 2011.
[55]  Wu K, Yang J, Qiu X Y, Xu J M, Zhang Q Q, Jin J, Zhuang Q C. Electrochim. Acta, 2013, 108: 841.
[56]  Onal I, Soyer S, Senkan S. Surf. Sci., 2006, 600: 2457.
[57]  屈丽辉(Qu L H), 江文锋(Jiang W F), 刘彦初(Liu Y C), 夏玉(Xia Y),潘福中(Pan F Z). CN 101901891A, 2010.
[58]  黄东海(Huang D H),刘建生(Liu J S),周邵云(Zhou S Y). 电池(Battery Bimonthly), 2014, 44(2): 80.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133