首页> 外文期刊>Journal of Applied Polymer Science >Influence of electrolytes of Li salts, EMIMBF4, and mixed phases on electrochemical and physical properties of Nafion membrane
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Influence of electrolytes of Li salts, EMIMBF4, and mixed phases on electrochemical and physical properties of Nafion membrane

机译:Li Salts,EmimBf4和混合相电解对Nafion膜电化学和物理性质的影响

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Electrolyte-soaked Nafion is commonly used as an ionic polymer in soft actuators. Here, a multitechnique investigation was applied to correlate the electrochemical behavior of Nafion membranes with their microstructures and nanostructures as a function of electrolyte type. The influence of electrolytes of Li salts with different counteranions on the Nafion membranes was investigated in terms of hydration level, structure (using X-ray diffraction and small angle X-ray scattering), stress-strain characteristics, and electrochemical behavior (by cyclic voltammetery and electrochemical impedance spectroscopy). The effects of using ionic liquid (IL), as the electrolyte, addition of different supporting solvent and the addition of Li+ ions to water-free IL-soaked membranes on the structural and electrochemical properties of Nafion were examined. The nano- and microstructure of the Nafion changed considerably as a function of the identity of the electrolyte solution. The electrochemical behavior of the IL-soaked samples was compared with that of the water-soaked Li+-exchanged Nafion. It was seen that the ionic conductivity of the Nafion membranes was reduced significantly when water was replaced by pure IL. Using the supporting solvents increased the conductivity of IL-soaked Nafion membranes dramatically. The presence of a small amount of Li+ ions together with the IL ions caused a significant decrease in charge transfer resistance and increases in double layer capacitance and in ionic conductivity over that of the water-free sample and also over water-soaked Li+-exchanged Nafion. These findings can be useful to improve the knowledge on Nafion's microstructure and also to improve the electromechanical behavior of Nafion-based ionic polymer-metal composites actuators. (c) 2017 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2017, 134, 45239.
机译:电解质浸泡的Nafion通常用作软致动器中的离子聚合物。这里,应用多重研究以将Nafion膜的电化学行为与它们的微观结构和纳米结构相关联,作为电解质型的函数。在水合水平,结构(使用X射线衍射和小角度X射线散射),应力 - 应变特征和电化学行为方面,研究了Li盐对Nafion膜上的不同抗衡的影响。(通过循环伏安和电化学阻抗光谱)。使用离子液体(IL)作为电解质的效果,加入不同的载体溶剂和向无水IL-浸膜中加入Li +离子,对Nafion的结构和电化学性质进行无水IL-浸渍膜。 Nafion的纳米和微观结构随着电解质溶液的特性而变化显着变化。将IL-浸泡样品的电化学行为与水浸泡Li + -Changed Nafion的电化学行为进行了比较。有人看出,当水被纯IL取代时,氮膜的离子电导率显着降低。使用支撑溶剂显着提高IL-浸出的氮膜的导电性。将少量Li +离子的存在与IL离子一起导致电荷转移电阻的显着降低,并在无水样品中的双层电容和离子电导率增加,并且在水浸泡的Li + -Changed Nafion上。这些发现可以有助于改善Nafion的微观结构的知识,并还可以改善基于Nafion的离子聚合物 - 金属复合材料致动器的机电行为。 (c)2017 Wiley期刊,Inc.J.Phill。聚合物。 SCI。 2017,134,45239。

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