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Influence of imidazolium-based ionic liquids on the performance of ionic polymer conductor network composite actuators

机译:咪唑类离子液体对离子聚合物导体网络复合执行器性能的影响

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We investigated the influence of ionic liquids (ILs) on the electromechanical performance of ionic polymer conductor network composite (IPCNC) actuators. Four imidazolium ILs with two cations of different sizes, i.e. 1-ethyl-3-methylimidazolium ([EMI~+]) and 1-butyl-3-methylimidazolium ([BMI~+]), and two anions of different sizes, i.e. tetrafluoroborate ([BF_4~-]) and trifluoromethanesulfonate ([Tf-]), were used. The IPCNC actuators were fabricated using a direct assembly method with Ru02/Nafion~R nanocomposite as the electrode layers. The experimental results reveal that the actuator strain response time is nearly one order of magnitude shorter than the charging time. The IPCNCs with [EMI~+][Tf~-] exhibit the highest capacitance and the fastest response in both actuation and electrical charging as capacitors. In contrast, the IPCNCs with [EMI~+][BF_4~-] display the slowest charging time and lowest value of capacitance as capacitors. The IPCNCs with [BMI~+][BF_4~-] show the slowest response time. Furthermore, although the ILs used have a marked effect on the capacitances of the IPCNCs, using different ILs does not cause much change in the maximum strain of these IPCNCs. Consequently, the IPCNC actuators with [EMI~+][BF_4~-] show the highest electromechanical conversion efficiency while those with [EMI~+][Tf~] have the lowest electromechanical efficiency because of the highest capacitance and largest input electrical energy. The experimental results indicate that the two oppositely charged ions contribute in opposite manner to the strain response and hence the observed shorter actuation response time is likely caused by the strain cancellation effect between the cations and anions.
机译:我们研究了离子液体(ILs)对离子聚合物导体网络复合材料(IPCNC)促动器的机电性能的影响。四个咪唑ILs,带有两个大小不同的阳离子,即1-乙基-3-甲基咪唑鎓([EMI〜+])和1-丁基-3-甲基咪唑鎓([BMI〜+]),以及两个大小不同的阴离子,即四氟硼酸根使用[[BF_4-]]和三氟甲磺酸盐([Tf-])。 IPCNC致动器是使用直接组装方法以Ru02 / Nafion〜R纳米复合材料作为电极层制造的。实验结果表明,执行器应变响应时间比充电时间短近一个数量级。具有[EMI〜+] [Tf〜-]的IPCNC在作为电容器的致动和充电中均表现出最高的电容和最快的响应。相反,具有[EMI〜+] [BF_4〜-]的IPCNC显示最慢的充电时间和最低的电容值。具有[BMI〜+] [BF_4〜-]的IPCNC显示最慢的响应时间。此外,尽管使用的IL对IPCNC的电容有显着影响,但是使用不同的IL不会引起这些IPCNC的最大应变的很大变化。因此,具有[EMI〜+] [BF_4〜-]的IPCNC执行器显示出最高的机电转换效率,而具有[EMI〜+] [Tf〜]的IPCNC执行器则具有最低的机电转换效率,这是因为其具有最高的电容和最大的输入电能。实验结果表明,两个带相反电荷的离子对应变响应的贡献相反,因此观察到的更短的致动响应时间可能是由于阳离子和阴离子之间的应变消除效应引起的。

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