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塑料化薄膜锂离子电池的制造技术 被引量:10

Technical Investigaton of Thin-film Plasticizing Lithium Ion Battery
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摘要 通过比较不同聚合物骨架材料与增塑剂所制备的聚合物膜的性能 ,优选出合适的基质骨架材料和增塑剂 .在此基础上 ,探索了塑料化聚合物薄膜电极的工业化制造方法 ,优化了聚合物电解质隔膜与正负极极片的配比 ,探讨塑料化薄膜电极的复合方式 ,并对所制备的塑料化薄膜锂离子电池电性能进行了考察 ,结果表明 :薄膜塑料锂离子电池具备与液态锂离子电池相近的电化学性能 . A number of polymer materials as candidates of host matrix of plastic polymer electrolyte were examined and techniques for preparation of thin_film electrolyte were reported. The results showed that the polymer electrolyte prepared with P(VDF_HFP) copolymer as host matrix and DBP as plasticizer exhibit the satisfactory mechanical strength and ionic conductivity. In comprison with liquid electrolyte systems, thin_film lithium ion battery has almost similar charge_discharge capacity and cycleability. The manufacture methods and the technical factors in making plasticizing lithium ion battery were also described in details.
出处 《电化学》 CAS CSCD 2000年第2期193-199,共7页 Journal of Electrochemistry
基金 国家自然科学基金! (2 98330 90 ) 国家863计划新材料领域资助! (715 0 0 4 0 2 70 )项目
关键词 聚合物电解质 锂离子电池 塑料化薄膜 制造 Polymer electrolyte, Lithium ion battery, Plasticizing
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参考文献5

  • 1[1] Gozdz A S, Scumutz C N, Tarascon J M. Rechargeable lithium intercalation battery with bybrid polymeric electrolyte[P]. US Pat: No.5, 296, 318, 1993-03-05.
  • 2[2] Tarascon J M, Abraham K M. Method of making an electrolyte activatable lithium-ion rechargeable battey cell[P]. U.S. Pat: No.5, 456,000. 1995.
  • 3[3] Gauthier M, Belanger A, Bouchard P. Large lithium polymer battery development-the immobile solven concept[J]. J. of Power Sources, 1995, 54:163~169.
  • 4[4] Gozdz A S, Fall S T, Schmutz C N. Polymeric electrolytic cell separator membrane[P]. U.S. Pat: No.5, 418,091. 1995.
  • 5[5] Gozdz A S, Tarascon J M. Extended abstract of the 8th international meeting on lithium batteries[C]. June, 16-21, 1996, Japan, 1-B-15.

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