期刊文献+

锂离子电池用层状LiMnO_2基正极材料的研究进展 被引量:7

RESEARCH PROGRESS ON LAYERED LiMnO_(2)-BASED CATHODE MATERIALS FOR LITHIUM-ION BATTERIES
在线阅读 下载PDF
导出
摘要 层状LiMnO2材料因其结构不稳定、循环性能差,因而需对其进行掺杂改性。层状锰系衍生物具有比容量高、循环性能稳定等优点,已成为锂离子电池新的发展方向。介绍了目前对LiMnO2的掺杂改性研究,对多元层状锰基固溶体正极材料作了重点阐述。总结了近年来关于多元层状锰基正极材料的研究发展,介绍了其晶体结构、电化学性能、合成与制备技术,以及进一步的改性研究。如果多元层状固溶体材料的高倍率放电性能得到进一步的提高,则其必将成为新的一代锂离子电池正极的首选材料。 Research of the effects of doping modification on layered LiMnO2 material has been carried out because of its unstable structure and poor retention capacity. Layered LiMnO2 has a higher retention capacity and stable cycle performance, and it has become a promising material in the recent development of the next-generation positive electrode materials for lithium-ion batteries. Research of doping modification of layered LiMnO2-based cathode materials, especially multi element doping manganese base solid solution, is reviewed. The progress in recent years in research of multi-doped layered manganese-based positive electrode materials, such as its crystal structure, synthesis methods, and electrochemical properties, as well as the research of further modifications, are summarized. The exploration of simple synthesis methods and improvement of these materials will accelerate its application for lithium-ion batteries in the near future. If the discharge capability of multi-element doped layered solid solution materials is further enhanced, LiMnO2 will be the first choice for a positive electrode material in the development of lithium ion batteries.
出处 《硅酸盐学报》 EI CAS CSCD 北大核心 2005年第9期1127-1132,1152,共7页 Journal of The Chinese Ceramic Society
关键词 锂离子电池 正极材料 层状锰酸锂 多元掺杂锰基固溶体 lithium-ion battery cathode material layered lithium manganate multi-doped manganese based solid solutions
  • 相关文献

参考文献47

  • 1郑子山,唐子龙,张中太,沈万慈.掺铬锂电池正极材料Li_(1+x)Cr_yMn_(2-y-x)O_4的合成及其结构性能的研究[J].硅酸盐学报,2001,29(6):554-558. 被引量:6
  • 2徐茶清,田彦文,翟玉春.锂离子电池正极材料LiMn_2O_4的研究现状[J].材料与冶金学报,2002,1(4):243-251. 被引量:14
  • 3姚素薇,张绍丽,徐宁,邱瑞珍,张卫国.锂离子蓄电池层状锰系正极材料的研究进展[J].电源技术,2003,27(6):554-557. 被引量:6
  • 4CAPITAINE F, GRAVEREAU P, DELMAS C. A new varie ty of LiMnO2 with a layered structure[J]. Solid State Ionics,1996, 89:197-202.
  • 5JANG Young II, CHIANG Yet-Ming. Stability of the monoclinic and orthorhombic phases of LiMnO2 with temperature,oxygen partial pressure, and A1 doping[J]. Solid State Ionics, 2000,130: 53-59.
  • 6STOREY C, KARGINA I, GRINCOURT Y, et al. Electrochemical characterization of a new high capacity cathode[J]. J Power Sources, 2001, 97-98: 541-544.
  • 7GRINCOURT Y, STOREY C, DAVIDSON I J. Lithium ion cells using a new high capacity cathode[J]. J Power Sources,2001, 97-98: 711-713.
  • 8MYUNG S T, KOMABA S, HIROSAKI N, et al. Emulsion drying preparation of layered LiMnx Cr1-x O2 solid solution and its application to Li-ion battery cathode material[J]. J Power Sources, 2003,119 - 121: 211-215.
  • 9ARMSTRONG A R, ROBERTSON A D, BRUCE P G. Structural transformation on cycling layered Li ( Mn1-y Coy ) O2 cathode materials[J]. Electrochim Acta, 1999, 45: 285-294.
  • 10许名飞,李新海,张云河,吴显明.层状锰酸锂的制备及改性[J].电源技术,2003,27(4):366-369. 被引量:11

二级参考文献75

  • 1陈彦彬,刘庆国.高温下LiMn_2O_4的容量衰减及对策[J].电池,2001,31(4):198-201. 被引量:15
  • 2李玉增,钱九红.锂离子二次电池研究进展[J].电池,1995,25(6):286-289. 被引量:7
  • 3任学佑.锂离子电池及其发展前景[J].电池,1996,26(1):38-40. 被引量:18
  • 4[1]Tanaka, T.; Ohta, K.; Arai, N. J. Power Sources, 2001,97-98:2
  • 5[2]Lu, Z.; MacNeil, D. D.; Dahn, J. R. Electrochem. SolidState Lett., 2001, 4:A200
  • 6[3]MacNeil, D. D.; Lu. Z.; Chen, Z.; Dahn, J. R. J. Power Sources, 2002, 108:8
  • 7[4]Kang, S. H.; Kim, J.; Stoll, M. E.; Abraham, D.; Sun, Y.K.; Amine, K. J. Power Sources, 2002, 112:41
  • 8[5]Spahr, M.E.; Novak, P.; Schnyder, B.; Haas, O.; Nespar,R. J. Electrochem. Soc., 1998, 145:1113
  • 9[6]Madhavi, S.; Subba Rao, G.V.; Chowdari, B. V. R.; Li, S.F.Y. J. Electrochem. Soc., 2001, 148:A1286
  • 10[7]Shaju, K.M.; Subba Rao, G. V.; Chowdari, B.V.R.Electrochimica Acta, 2002, 48:145

共引文献50

同被引文献77

引证文献7

二级引证文献15

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