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Poly(3-methylthiophene) electrochemical actuators showing increased strain and work per cycle at higher operating stresses

机译:聚(3-甲基噻吩)电化学致动器在较高的工作应力下显示出增加的应变和每个循环的功

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摘要

Conducting polymers, such as polythiophenes, are promising low voltage actuator materials. The performance of these materials has improved significantly in recent years. A remaining problem, however, is the significant decline in the actuation strain produced when the external stress is increased. Using a poly(3-methylthiophene) actuator in an ionic liquid electrolyte it is shown that the isotonic actuation actually increases with increasing applied stress. The work output per cycle consequently increases at higher stresses, which is very desirable for practical devices. Although theoretically predicted, these results are the first demonstration of the increased actuator performance at higher operating stresses. The actuation behaviour was found to be strongly dependent upon the operating electrolyte and explained by the shifts in the elastic modulus of the actuator material that occurred during operation.
机译:导电聚合物,例如聚噻吩,是有前途的低压致动器材料。近年来,这些材料的性能已显着改善。然而,剩下的问题是当外应力增加时产生的致动应变显着下降。在离子液体电解质中使用聚(3-甲基噻吩)致动器表明,等渗致动实际上随着施加应力的增加而增加。因此,每个周期的功输出在较高的应力下增加,这对于实际设备是非常需要的。尽管从理论上进行了预测,但这些结果是在更高的工作压力下提高执行器性能的首次证明。发现致动行为强烈地取决于工作电解质,并且可以通过在运行期间发生的致动器材料的弹性模量的变化来解释。

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