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Studies on plasticized PEO-lithium triflate-ceramic filler composite electrolyte system

机译:增塑PEO-三氟甲磺酸锂-陶瓷填料复合电解质体系的研究

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Composite polymer electrolytes (CPEs), polyethylene oxide (PEO)+Li triflate with Li Nasicompound [Li-1.4(Al0.4Ge1.6) (PO4)(3)] as the ceramic filler and EC + PC as the plasticizer, have been studied as thin films, Their crystallinity, thermal behaviour, mechanical strength, ionic conductivity, interfacial stability and Li(Is) XPS binding energies (BEs) have been examined. Changes in T-g, melting temperatures (T-m1 and T-m2), tensile strength (TS) and maximum elongation at break of the CPE films have been studied as a function of different wt.% plasticizer. With the addition of plasticizer, an order of magnitude increase in the ionic conductivity was obtained for temperature T<60degreesC. The sigma - T data of the CPEs have been fitted to either Arrhenius-type or Vogel - Tamman - Fulcher (VTF)-type behaviour depending on the T range and plasticizer content. Inter-facial stability was found to be enhanced with the addition of plasticizer. The variation in the Li(I s) binding energies correlates well with that of,7 values, Present study shows that CPEs with 5-10 wt.% plasticizer exhibit the optimum performance. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 27]
机译:复合高分子电解质(CPE),聚环氧乙烷(PEO)+三氟甲磺酸锂,Li Nasicompound [Li-1.4(Al0.4Ge1.6)(PO4)(3)]作为陶瓷填料和EC + PC作为增塑剂作为薄膜,我们研究了它们的结晶度,热性能,机械强度,离子电导率,界面稳定性和Li(Is)XPS结合能(BEs)。已经研究了CPE薄膜的T-g,熔融温度(T-m1和T-m2),抗张强度(TS)和最大断裂伸长率的变化作为不同重量%增塑剂的函数。添加增塑剂后,温度T <60℃,离子电导率增加了一个数量级。 CPE的sigma-T数据已根据T范围和增塑剂含量拟合为Arrhenius型或Vogel-Tamman-Fulcher(VTF)型行为。发现通过添加增塑剂可以增强界面稳定性。 Li(Is)结合能的变化与7值的变化具有很好的相关性。目前的研究表明,含有5-10 wt%增塑剂的CPE表现出最佳性能。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:27]

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