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聚合物电解质离子迁移数的测定方法 被引量:11

The Progress of Measurement of Transference Number in Solid Polymer Electrolyte
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摘要 介绍了用于测定理想聚合物电解质中离子迁移数的三种比较常用的电化学方法。阐述了实际聚合物电解质输运性质和理想聚合物电解质输运性质之间的区别 ,并说明了实际聚合物电解质的离子迁移数的测定方法。 Three commonly used electrochemical methods for measurement of transference number in dilute,ideal polymer electrolyte is presented.The difference of transport properties between dilute,ideal polymer electrolyte and concentrated polymer electrolyte is described.Then measurement method of transference number in concentrated polymer electrolyte is presented.
出处 《化学通报》 CAS CSCD 北大核心 2001年第5期312-315,308,共5页 Chemistry
关键词 离子迁移数 聚合物电解质 扩散系数 电导率 稳态电流法 交流阻抗法 浓差电池法 电化学方法 Transference number, Polymer electrolyte, Diffusion coefficient Conductivity
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参考文献1

  • 1A. Bouridah,F. Dalard,D. Deroo,M. B. Armand. Potentiometric measurements of ionic transport parameters in poly(ethylene oxide)-LiX electrolytes[J] 1987,Journal of Applied Electrochemistry(3):625~634

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  • 2He Xiang-ming, Shi Qiao, Zhou Xiao, et al. In situ composite of nano SiO2-P (VDF-HFP) porous polymer electrolytes for Li-ion batteries [ J ]. Electrochimica Acta, 2005, 51: 1069-1075.
  • 3Croce F, Persi L, Ronci F, et al. Nanocomposite polymer electrolytes and their impact on the lithium battery technology[J]. Solid State Ionics, 2000, 135: 47-52.
  • 4Jiang Yan-xia, Chen Zuo-feng, Zhuang Quan-chao, et al. A novel composite microporous polymer electrolyte prepared with molecule sieves for Li-ion batteries [ J ]. Journal of Power Sources, 2006, 160: 1320-1328.
  • 5Alfredsson V. Cubosome description of the inorganic mesoporous structure MCM-48 [ J ]. Chem Mater, 1997, 9: 2066-2070.
  • 6Schumacher K, Grun M, Unger K K. Novel synthesis of spherical MCM-48 [ J ]. Microporous and Mesoporous Materials, 1999, 27:201-206.
  • 7Kim D W, Kim Y R, Park J K, et al. Electrical properties of the plasticized polymer electrolytes based on arylonitrile-methyl methacrylate copolymers [ J ]. Solid State Ionics, 1998, 106: 329-337.
  • 8LIU Xing-quan(刘兴泉),CHEN Zhao-yong(陈召勇),LI Shu-hua(李淑华),HE Ze-zhen(何泽珍),YU Zhu-long(于作龙).Preparation of LixMn2O4 spinels by in-situ redox precipitation hydrothermal synthesis process(原位氧化还原沉淀水热合成法制备LixMn2O4间晶石)[J].Chemical journal of chinese universities(高等学校化学学报),2002,23(2):179-181.
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