期刊文献+

聚合物锂离子蓄电池化成气体自动消失现象 被引量:7

Gas disappearing during polymer lithium battery's formation
在线阅读 下载PDF
导出
摘要 采用气相色谱方法分析了聚合物锂离子蓄电池各个化成阶段的气体组成;考察了不同阶段的气体消失情况;对不同化成阶段的负极进行了X射线衍射光谱法(XRD)分析;对比了在不同化成阶段对电池进行排气处理对电池容量以及循环性能的影响。聚合物锂离子蓄电池在各个化成阶段的化成气体成分基本一致,主要成分为烯烃类。在化成深度较深电池中会发生气体消失的现象,气体消失的原因为化成气体与负极发生了反应。得到了最佳的排气处理工艺,可以将电池容量提高约3%,并可以使循环性能得到提高。 Gas compositions of polymer lithium ion battery (PLIB) were analyzed at different forming stages. Disappearance of gas was studied at different forming stages. The negative electrodes of PLIB at different states were analyzed by x-ray diffraction (XRD), and the influence of gas on the capacity and cycle performance of PLIB was compared. The gas generating in PLIB, mainly composed of alkenes, had the same composition at different forming stages. The gas was absorbed inside battery obviously in the deep formed PLIBs, because the deep formed negative electrode can react with gas. The PLIB had about 3% higher capacity and longer cycle life when gas inside was removed at the best technology.
出处 《电源技术》 CAS CSCD 北大核心 2006年第12期964-967,共4页 Chinese Journal of Power Sources
关键词 聚合物锂离子蓄电池 化成 化成气体 polymer lithium ion battery formation formation gas
  • 相关文献

参考文献5

二级参考文献17

  • 1金明钢.我国固态锂离子电池工业发展近况[J].电池工业,2000,5(2):88-92. 被引量:12
  • 2陈益奎 冯熙康 刘党均 等.聚合物固体电解质的测试研究[A]..第七届全国固态离子学学术会议论文集[C].四川成都,1994.12-16.
  • 3[1]APPETECCHI G B, PANERO S, SPILA E, et al. Plastic power sources[J]. J Appl Electrochem, 1998, 28:1 299-1 304.
  • 4[2]ENDO M, KIM C, NISHIMURA K, et al. Recent development of carbon materials for Li-ion batteries [ J ]. Carbon, 2000, 38: 183-197.
  • 5[3]WANG C S, APPLEBY A J, LITTLE F E. Electrochemical impedance study of initial lithium ion intercalation into graphite powders[J ]. Electrochim Acta, 2001, 46:1 793-1 813.
  • 6[4]DOLLE M, ORISINI F, GOZDA A S. Development of reliable three electrode impedance measurements in plastic Li-ion batteries [J ]. J Electrochem Soc, 2001, 148:A 851-A 857.
  • 7[5]CARAVANIER M C, MONTIGNY B C, LEMORDANT D, et al.Absorption ability and kinetics of a liquid electrolyte in PVDF-HFP copoymer containing or not SiO2 [J]. J Power Sources, 2002, 107:125-132.
  • 8[6]CHANG Y C, SOHN H J. Electrochemical impedance analysis for lithium ion intercalation into graphite carbons[J ]. J Electrochem Soc,2000, 147:50-58.
  • 9[7]PIAO T H, PARK S M, DOH C H, et al. Intercalation of lithium ions into graphite electrodes studied by AC impedance measurement[J]. J Electrochem Soc, 1999,146:2 794-2 798.
  • 10[8]JEONG S K, INABA M, ABE T, et al. Surface film formation on grahite negative electrode in lithium-ion batteries. AFM study in an ethylene carbonate based solution[J]. J Electrochem Soc, 2001, 148:A 989-A 993.

共引文献28

同被引文献36

引证文献7

二级引证文献137

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