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Mechanoelectrical Conversion in Highly Ionic Conductive Solid‐State Polymer Electrolyte Membranes

机译:在高离子Mechanoelectrical转换导电聚合物电解质固体量状态膜

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摘要

Abstract A novel phenomenon of mechanoelectrical conversion in a flexible solid‐state polymer electrolyte membrane (PEM) is presented, hereafter denoted as flexoelectric effect. The flexoelectric coefficient (≈323?μC?m ?1 ), that is, a measure of the converted mechanoelectrical energy, is the highest among all flexoelectric materials hitherto reported. It is proposed in this work that the flexoelectricity in PEMs operates based on electrical energy generation driven by ion polarization/depolarization across the PEM subjected to a pressure gradient during bending. Of particular interest is the phenomenon of polarity switching during bending, that is, reversal of the polarization direction with increasing succinonitrile (SCN) concentration (i.e., 10–20 wt%). The size disparity between the solvated cations and anions is attributed as the key factor in determining the polarization direction, which is responsible for the polarity switching. Of particular importance is that the present flexoelectric PEM itself is a key component of the solid‐state lithium ion battery and thus their integration opens up a new avenue for energy harvesting and storage devices.
机译:小说mechanoelectrical转换的现象灵活的固体聚合物电解质膜状态(PEM)提出,以后表示flexoelectric效果。系数(≈323μC ?衡量mechanoelectrical转换在所有flexoelectric能量,是最高的迄今报道材料。这项工作的flexoelectricity到聚合物基于电能代运营由离子极化/去极化PEM期间受到压力梯度弯曲。极性转换的弯曲,极化方向的逆转增加琥珀腈(SCN)浓度(例如,10 - 20 wt %)。溶剂化阳离子和阴离子是由于关键因素在确定极化方向,负责的极性切换。现在flexoelectric PEM本身是一个关键锂离子电池组件的固体量状态因此他们的集成开辟了一条新途径能源收集和存储设备。

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