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表面镀膜对锂离子电池石墨负极电化学性能的影响 被引量:5

Effect of surface plating on the electrochemical performance of graphite anode of Li-ion batteries
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摘要 为了提高锂离子电池石墨负极的电化学性能,采用镀膜法对极片进行表面处理。结果表明:镀层TiN的存在减少了电极在首次充放电过程中形成的SEI膜的量,从而减少了活性物质和电解液的损失,提高了电池的充放电容量10%左右;TiN与SEI膜在电极表面共同形成的钝化膜要优于单纯的SEI膜,前者更有利于电池可逆容量和充放电效率的提高。 Surface plating was used to improve the electrochemical performance of graphite anode of Li-ion batteries. The result indicated that the SEI formed during the initial charge and discharge process was significantly reduced by the TiN membrane plated on the surface of the graphite electrode, which consequently lessened the loss of the active component and the electrolyte and increased the specific capacity of the electrode by 10%. Meantime the function of the passivation membrane formed by the TiN and SEI together was better than that by single SEI, the former was advanced in the improvement of the reversible capacity and the coulombic efficiency of the electrode.
作者 俞政洪 吴锋
出处 《电池》 CAS CSCD 北大核心 2003年第6期342-344,共3页 Battery Bimonthly
基金 国家科技部基础研究重大项目前期研究专项项目(2001CCA05000)
关键词 表面镀膜 锂离子电池 石墨负极 电化学性能 镀膜法 负极材料 surface plating Li-ion battery graphite anode
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  • 1吴国良,金维华,刘人敏.石墨/LiCoO_2锂离子电池研制[J].电池,1996,26(2):62-65. 被引量:5
  • 2[1]Dahn J, Fong R, Soon M. Suppression of staging in Li-intercalated carbon by disorder in the host[J ]. Phys Rev Sect B, 1990, 42:6 424- 6 432.
  • 3[2]Ozuku T, Iwakoshi Y, Saeai. Formation of lithium-graphite intercalation compound in nonaqueous electrolytes and their application as a negative electrode for a lithium ion cell[J]. J Electrochem Soc, 1993, 140: 2490 - 2498.
  • 4[3]Suhn Z, Mcmillian R, Mray J. Electrochemical intercalation of Li into graphite[ J ]. J Electrochem Soc, 1992, 140: 922 - 925.
  • 5[4]Fong R, Von Sacken U, Dahn J. Studies fo Li intercalation into car bons using nonaqueous electrochemical cells [ J ]. J Electrochem Soc, 1990, 137:2009 - 2013.
  • 6[5]Mori Y, Iriyama T, Hashimoto T, et al. Lithium doping/undoping in disordered coke carbons[J ]. J Power Sources, 1995, 56:205 - 208.
  • 7[6]Takei K, Terada N, Kumai K, et al. Effects of the macroscopic structure of carbon black on its behaviour as the anode in a lithium secondary cell[J]. J Power Sources, 1995, 55:191 - 195.
  • 8[7]Liu Q, Zhang T, Bindra C. Effect of morphology and texture on electrochemical properties of graphite anodes[J]. J Power Sources, 1997, 68: 287 - 290.
  • 9[9]Arora P, Popov B N, White R E. Electrochemical investigations of cobalt-doped LiMn2O4 as cathode material for lithium ion batteries [J]. J Electrochem Soc, 1998, 145: 807 - 811.
  • 10Xing Hongqi,J Electrochem Soc,1997年,144卷,7期,L187页

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  • 1信息产业部电子第十八研究所.天然石墨的改性方法[P].中国:CN 01145167 X.2002-08-28.
  • 2LAMPE C,SHI J,ONNERUD P,et al.Benchmark study on high performing carbon anode materials[J].Journal of Power Sources,2001,97(7):133-136.
  • 3SHI L,WANG Q,LI H,et al.Electrochemical performance of Nideposited graphite anodes for lithiun secondary batteries[J].Journal of Power Sources,2001,102(1):60-67.
  • 4LEE H,BAEK S,JANG S,et al.Characteristics of carbon-coated graphite prepared from mixture of graphite and polyvinylchloride as anode materials for lithium ion batteriees[J].Journal of Power Sources,2001,101(2):206-212.
  • 5ALEXANDROV V N,WU Y P,FANG S B,et al.Carbon anodes for a lithium seccondary battery based on polyacrylonitrile[J].Journal of Power Sources,1998,75(2):201-206.
  • 6ITO S,MURATA T,HASEGAWA M,et al.Study on CχN and CχS with disorded carbon structure as the anode materials for secondary lithium batteries[J].Journal of Power Sources,1997,68(2):245-248.
  • 7DAILLY A,WILLMANN P,BILLAUD D.Synthesis,haracterization and electrochemical performances of new antimony-containing graphite compounds used as anodes for lithium-ion batteries[J].Journal of Electrochimica Acta,2002,47(3):271-278.
  • 8LI H,HUANG X,CHEN L,et al.The crystal structure evolution of nano-Si anode by lithium insertin and extraction at room temperature[J].Solid State Ionics,2000,135(1):181-191.
  • 9DIMOV N,KUGINO S,YOSHIO M,et al.Carbon-coated silicon as anode materials for lithium-ion batteries[J].Journal of Electrochimica Acta,2003,48(11):1 579-1 588.
  • 10DIMOV N,FUKUDA K,UMENO T,et al.Characterization of carboncoated silicon-structural evolution and possible limitations[J].Journal of Power Sources,2003,114(1):88-95.

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