首页> 外文期刊>Macromolecules >POLYPHOSPHAZENE ELECTROLYTES .1. PREPARATION AND CONDUCTIVITIES OF NEW POLYMER ELECTROLYTES BASED ON POLY[BIS(AMINO)PHOSPHAZENE] AND LITHIUM PERCHLORATE
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POLYPHOSPHAZENE ELECTROLYTES .1. PREPARATION AND CONDUCTIVITIES OF NEW POLYMER ELECTROLYTES BASED ON POLY[BIS(AMINO)PHOSPHAZENE] AND LITHIUM PERCHLORATE

机译:聚磷电解质1。基于[双(氨基)磷腈]和高氯酸锂的新型高分子电解质的制备和电导率

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Two series of new phosphazene polymer electrolytes, PPAP/LiClO4 and PHAP/LiClO4, were prepared by complexing lithium perchlorate, LiClO4, to poly(bis(pentylamino)phosphazene), PPAP, and poly(bis(hexylamino)phosphazene), PHAP, respectively. The electrolytes were characterized by the combination of FTIR, P-31-NMR, and C-13-NMR spectroscopies. Films of these electrolytes showed good dimensional stability and ionic conductivity. The glass transition temperatures were determined by differential scanning calorimetry. The highest ionic conductivity, sigma, was 7 orders higher in magnitude than the sigma of its parent polymer and was similar to the sigma of PEO at room temperature. The plots of ionic conductivity versus temperature for the polymer electrolytes were found to correspond to the Vogel-Tammann-Fulcher equation throughout the temperature range 30-100 degrees C. [References: 34]
机译:通过将高氯酸锂LiClO4与聚(双(戊基氨基)磷腈),PPAP和聚(双(己基氨基)磷腈),PHAP分别络合制备了两种新型的磷腈聚合物电解质PPAP / LiClO4和PHAP / LiClO4 。通过FTIR,P-31-NMR和C-13-NMR光谱学的组合来表征电解质。这些电解质的膜显示出良好的尺寸稳定性和离子电导率。玻璃化转变温度通过差示扫描量热法测定。最高离子电导率σ比其母体聚合物的σ高7个数量级,并且与室温下PEO的σ相似。发现在整个温度范围30至100摄氏度之间,聚合物电解质的离子电导率与温度的关系图与Vogel-Tammann-Fulcher方程相对应。[参考文献:34]

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