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Vibrational spectroscopic and electrochemical characteristics of poly (propylene glycol)-silver triflate polymer electrolyte system

机译:聚丙二醇-三氟甲磺酸银聚合物电解质体系的振动光谱和电化学特性

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Fourier transform infrared spectroscopic and electrochemical complex impedance studies have been carried out on a series of complexes containing poly (propylene glycol) of molecular weight 4,000 and silver triflate (AgCF3SO3) salt corresponding to the ether oxygen to metal cation ratios (O: M) in the range 16:1 to 12:1. The formation of ion pairs and aggregates noticed in the case of specimens having high salt concentrations as well as the complete coordination of the cation with the ether oxygen at low salt concentrations within the PPG4000-AgCF3SO3 polymer electrolyte system have been confirmed. The appearance of two weak triflate bands at 1,032 and 1,272 cm~(-1) in the absorption spectra in respect of low salt concentrations is indicative of the fact that triflate ions are free within the polymer matrix. The room temperature (298 K) electrical conductivity is found to increase with increasing ether oxygen content while exhibiting the maximum value of 7.1x10~(-5)Scm~(-1) possibly due to silver ionic transport in the case of the typical composition having an O : M ratio of 16:1.
机译:已经对一系列分子量为4,000的聚丙二醇和三氟甲磺酸银(AgCF3SO3)盐(对应于醚氧与金属阳离子之比(O:M))的配合物进行了傅里叶变换红外光谱和电化学复数阻抗研究。范围从16:1到12:1。在PPG4000-AgCF3SO3聚合物电解质系统中,已证实在盐浓度高的样品中注意到离子对和聚集体的形成,以及在盐浓度低时阳离子与醚氧的完全配位。关于低盐浓度,在吸收光谱中在1,032和1,272 cm-1处出现了两个弱的三氟甲磺酸盐带,这表明三氟甲磺酸盐离子在聚合物基质中是自由的。发现室温(298 K)的电导率随醚含氧量的增加而增加,而最大值为7.1x10〜(-5)Scm〜(-1),这可能是由于典型组合物的银离子迁移导致的O:M比为16:1。

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