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Effect of the microsctructure and lithium-ion content in poly[(vinylidene fluoride)-co-trifluoroethylene]/lithium perchlorate trihydrate composite membranes for battery applications

机译:聚[(偏二氟乙烯)-三氟乙烯] /高氯酸锂三水合锂复合膜在电池中的微观结构和锂离子含量的影响

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Poly[(vinylidene fluoride)-co-trifluoroethylene] membranes doped with different lithium perchlorate trihydrate contents have been produced by solvent evaporation at different temperatures in order to tailor membrane morphology and characterized by infrared spectroscopy, thermal and mechanical analysis techniques. Electrochemical properties of the composite membranes for battery applications were determined through complex impedance spectroscopy and cyclic voltammetry. The polymer phase and molecular main features of the polymer do not depend on lithium ion content and crystallization temperature. Higher crystallization temperatures allow obtaining more porous polymer microstructures which strongly influences the electrical response. The degree of crystallinity and ionic conductivity, on the other hand, are related to lithium ion content. The obtained ionic conductivity determined by impedance spectroscopy increases with increasing lithium ion content. The most conducting electrolyte composition, PVDF-TrFE _(1.5)LiClO _4.3H _2O exhibits 2.3 × 10 ~(- 6) S cm ~(- 1) and corresponds to the membrane crystallized at room temperature, i.e. the most porous membrane.
机译:为了调节膜的形态并通过红外光谱,热和机械分析技术表征,已在不同温度下通过溶剂蒸发制备了掺杂有不同高氯酸锂三水合物含量的聚[(偏二氟乙烯)-共三氟乙烯]膜。通过复数阻抗谱和循环伏安法确定了用于电池的复合膜的电化学性能。聚合物的聚合物相和分子主要特征不取决于锂离子含量和结晶温度。较高的结晶温度允许获得更多的多孔聚合物微结构,其强烈影响电响应。另一方面,结晶度和离子电导率与锂离子含量有关。通过阻抗谱确定的获得的离子电导率随着锂离子含量的增加而增加。导电性最高的电解质组合物PVDF-TrFE _(1.5)LiClO _4.3H _2O表现出2.3×10〜(-6)S cm〜(-1),对应于在室温下结晶的膜,即多孔性最强的膜。

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