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PVA-CMC-KOH-H_2O碱性聚合物电解质研究 被引量:11

Studies on PVA-CMC-KOH-H_2O Alkaline Polymer Electrolytes
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摘要 由聚乙烯醇(PVA)与羧甲基纤维素钠(CMC)制备PVA-CMC-KOH-H2O碱性聚合物电解质膜,应用交流阻抗、循环伏安、差热分析和红外光谱等实验方法表征、研究其性能.结果表明,该碱性聚合物电解质的室温电导率可达到10-2S.cm-1数量级,在不锈钢惰性电极上的电化学稳定窗口约为1.6 V.另外,还研究了聚合物电解质膜中KOH、H2O和CMC对体系电导率的影响以及PVA-CMC-KOH-H2O碱性聚合物电解质在N i/MH电池中的初步应用.初步结果表明,由PVA-CMC-KOH-H2O聚合物电解质组装的N i/MH电池,其低倍率放电性能较好. A given amount of sodium carboxymethyl cellulose(CMC) was added to PVA complex and thus the PVA-CMC-KOH-H20 alkaline polymer electrolyte with this modification was prepared. The properties of the polymer electrolyte films were characterized by AC impedance, cyclic voltammetry, differential thermal analysis and infrared spectroscopic analysis methods. The polymer electrolyte exhibited a high ionic conductivity, typically 10-2S · cm^-1 with an electrochemical stability window of about 1.6 V on stainless steel blocking electrodes. The influence of the film composition such as KOH, H2O and CMC on ion conductivity was investigated. In addition, a preliminary study was carried out on the polymer electrolyte for Ni/MH battery, it was shown that the Ni/MH battery with the polymer electrolyte presented a good charge/discharge performance at lower discharge rates.
作者 袁安保 赵俊
出处 《电化学》 CAS CSCD 北大核心 2006年第1期40-45,共6页 Journal of Electrochemistry
基金 上海市教委发展基金(02AK50)资助
关键词 碱性聚合物电解质 PVA CMC 共混改性 离子电导率 Alkaline polymer electrolyte, PVA, CMC, Modification by blend, Ion conductivity
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参考文献14

  • 1Fauvarque J F, Guinot S, Bouzir N, et al. Alkaline poly(ethylene oxide) solid polymer electrolytes. Application to nickel secondary batteries [ J ]. Electrochim Acta, 1995, 40(13(14) : 2449 -2453.
  • 2Guinot S, Salmon E, Penneau J F, et al. A new class of PEO-based SPEs: structure, conductivity and application to alkaline secondary batteries [ J]. Electochim Acta, 1998, 43(10(11): 1163 -1170.
  • 3Vassal N, Salmon E, Fauvarque J F. Nickel/metal hydride secondary batteries using an alkaline solid polymer electrolyte [J]. J. Electrochem. Soc., 1999, 146(1) : 20 -26.
  • 4Vassal N, Salmon E, Fauvarque J F. Electrochemical properties of an alkaline solid polymer electrolyte based on P(ECH-co-EO) [ J ]. Electrochim Aeta, 2000, 45 :1527 - 1532.
  • 5Lewandowski A, Skorupska K, Malinska J. Novel poly( viny alcohol)-KOH-H2O alkaline polymer electrolyte[J]. Solid State Ionics, 2000, 133:265-271.
  • 6Yang C C. Polymer Ni-MH battery based on PEO-PVAKOH polymer electrolyte [ J]. J. Power Sources, 2002,109:22-31.
  • 7Mohamad A A, Mohamed N S, Alias Y, et al. Studies of alkaline solid polymer electrolyte and mechanically alloyed polycrystalline Mg2 Ni for use in nickel metal hydride batteries [J]. J. Alloys Comp. , 2002, 337:208-213.
  • 8Yang C C, Lin S J. Preparation of composite alkaline polymer electrolyte C J ]. Mater. Lett., 2002, 57 : 873- 881.
  • 9Yang C C, Lin S j, Hsu S T. Synthesis and characterization of alkaline polyvinyl alcohol and poly( epichlorohydrin) blend polymer electrolytes and performance in electrochemical cells [ J ]. J. Power Sources, 2003,122:210 -218.
  • 10Palacios I, Castillo R, Vargas R A. Thermal and transport properties of the polymer electrolyte based on poly( vinyl alcohol )-KOH-H2O [ J ]. Electrochim Acta,2003, 48 : 2195 - 2199.

二级参考文献15

  • 1严瑞xuan.水溶性高分子[M].化学工业出版社,1988.48-56.
  • 2阳开新.可用于铁氧体粉体的表面改性剂.第四届全国磁性材料及元器件应用技术交流会论文集[M].,1999.1-5.
  • 3阳开新.铁氧体坯件温升与排胶.高性能软磁铁氧体大生产及应用技术研讨会论文集[M].,1998.74-79.
  • 4Fenton, D E; Parkker, J M; Wright, P V. Polymer 1973,14, 589.
  • 5Wright, P V Br. Polym J 1975, 7, 319.
  • 6Armand, M B; Chabagno, J M; Duclot, M J Fast Ion Transport in Solids, Ed: Vashishta, P, North Holland, New York, 1979, p. 131.
  • 7Fauvarquc, J F; Gunot, S; Bouzir, N; Salmor, E;Penncan, J F .Electrochim Acta 1995, 40(13-14), 2449.
  • 8Gunot, S; Salmon, E; Penneau, J F; Fauvarque, F.Electochim Acta 1998, 43(10-11), 1163.
  • 9Vassal, N; Salmon, E; Fauvarque, J F .Electrochim Acta 2000, 45, 1527.
  • 10Vassal, N; Salmon, E; Fauvarque, J F .J Electrochem Soc 1999, 146(1), 20.

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