期刊文献+

二次锂电池用硫系正极材料的研究进展 被引量:4

Research and applications of sulfide cathode material of lithium rechargeable battery
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摘要 较系统地介绍了二次锂电池用硫系正极材料的发展概况及其研究现状。希望通过介绍含硫材料的特征、探讨多种具有前景的正极材料,为人们深入研究和开发这种含硫正极材料提供一定的依据。 The developing survey and research status of sulfide cathode material of lithium rechargeable battery were introduced at home and abroad systemically. By introducing the characters of sulfide material and discussing some promising cathode materials, it may provide some foundation for people to go deep into researching and exploding the sulfide material.
出处 《电源技术》 CAS CSCD 北大核心 2005年第9期619-622,共4页 Chinese Journal of Power Sources
基金 广东省重大科技专项基金(2003A1100101) (2003C105006)
关键词 锂电池 单质硫 正极材料 硫化物 lithium battery elemental sulfur cathode material sulfide
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参考文献34

  • 1杨裕生,王维坤,苑克国,曹高萍,王安邦.锂电池正极材料有机多硫化物的展望[J].电池,2002,32(z1):1-5. 被引量:42
  • 2王久林 解晶莹 杨军.二次电化学电源正极用纳米单质硫复合材料及其制备方法[P].CN:1384556.2002.
  • 3杨裕生 曹高萍 卢嘉春.高比容量有机硫化物正极材料的进展[A]..第十一届全国电池会议论文集[C].南京,2001.B055:55-56.
  • 4WEB N,KUMMER. Proc Annu[ J].J Power Sources Conf, 1967,21:37.
  • 5VISCO S, DE J. Ionic conductivity of organosulfur metls advanced storage electrodes [J]. J Electrochem Soc, 1988,135 (12): 2 905-2910.
  • 6BROADHEAD J, SKOTHEIM T. A safe, fast-charge, two-volt lithi um/polymer cathode AA-size cell with a greater than 250 Wh/kg energy density[J]. J Power Sources, 1997, 65:213-218.
  • 7NAOI K, MENDA M, OOIKE H, et al. An enhanced redox process of disulfide compound at polyaniline film electrode[J]. J Electroannal Chem, 1991,318:395-398.
  • 8SKOTHEIM T. Electroactive high storage capacity polycarbonsulfide materials and electrolytic cells containing same [P]. US P:05601947, 1997.
  • 9NOBORU O, POPE J M, SOTOMURA T. Effects of adding copper(I) salt to organo sulfur cathodes for rechargeable lithium batteries[J]. J Electrochem Soc,1997, 144(4): L 47-L 51.
  • 10NAOI K, KAWASE K, INOUE Y. A new energy storage material:organosulfur compounds based on multiple S-S bonds [J]. J Electrochem Soc, 1997, 144(6):L170-176.

二级参考文献68

  • 1马文石,龚克成.聚有机二硫化物储能材料的研究进展[J].材料导报,1996,10(1):51-55. 被引量:5
  • 2马文石 龚克成.-[J].材料导报,1996,1:51-51.
  • 3马文石 贾振斌 等.-[J].高分子材料科学与工程,1998,14(5):110-110.
  • 4[1]DOUG K, BRUNO K. Lithium polymer batteries development for large battery applications[A]. IEEE. Proceedings of the 38th Power Sources Conference[C]. Piscataway, NJ, USA:IEEE,1998,282-286.
  • 5[2]MCGEE K.Chemical LLC[N]. Press Release, 2001-05-14.
  • 6[3]DOEFF, MARCA M, EDMAN, et al. Transport properties of binary salt polymer electrolytes[J]. J Power Sources, 2000,89:227-231.
  • 7[4]THOMAS, KAREN, SLOOP, et al. Comparison of lithium polymer cell performance with unity and nonunity transference numbers[J]. J Power Sources, 2000,89:132-138.
  • 8[5]BURIEZ, OLIVER, HAN, et al. Performance limitations of polymer electrolytes based on ethylene oxide polymers[J]. J Power Sources, 2000,89:149-155.
  • 9[6]SHRIVER, DUWARD F, RATNER, et al. Monte Carlo Simulations of Polyelectrolytes: Solid State Ionics[M]. in press.
  • 10[7]HAN, YONG B., HOU J, et al. Chemical, electrochemical and mechanical requirements for electrolytes at electrode interfaces[A]. LANDGREBE, ALBERT R, KLINGER, et al. Interfaces, Phenomena and Nanostructures in Lithium Batteries[C]. Pennington, NJ, USA: The Electrochemical Society Proceedings Series, 2000.340-352.

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