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首页> 外文期刊>Journal of Materials Science >Electromechanical actuators based on poly(vinylidene fluoride) with [N-1 (1) (1) (2(OH))][NTf2] and [C(2)mim] [C2SO4]
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Electromechanical actuators based on poly(vinylidene fluoride) with [N-1 (1) (1) (2(OH))][NTf2] and [C(2)mim] [C2SO4]

机译:基于聚偏二氟乙烯与[N-1(1)(1)(2(OH))] [NTf2]和[C(2)mim] [C2SO4]的机电致动器

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Actuators based on electroactive polymers are increasingly used in applications including microelectronic devices and artificial muscles, demanding low voltage operation and controllable switching response. This work reports on the preparation of electroactive actuators based on poly(vinylidene fluoride) (PVDF) composites with 10, 25, and 40 wt% N,N,N-trimethyl-N-(2-hydroxyethyl) ammonium bis(trifluoromethylsulfonyl)imide ([N-1 1 1 2(OH)][NTf2]) and 1-Ethyl-3-methylimidazolium Ethylsulfate ([C(2)mim][C2SO4]) ionic liquids (ILs) prepared by solvent casting. Independent of the IL type, its presence leads to the crystallization of PVDF in the piezoelectric beta-phase. The degree of crystallinity and electrical conductivity of the samples strongly depends on ILs type and content. The highest electrical conductivity was found for PVDF/IL composites with 40 wt% of [N-1 1 1 2(OH)][NTf2]. The strain displacement and bending of the PVDF/IL composites were evaluated as a function of IL type and content under applied peak voltages of 2.0, 5.0, and 10.0 V at a frequency of 10 mHz. Strain displacement of the actuators depends more on IL content than on IL type, and the best strain bending response was found for the PVDF/IL composite with 25 wt% of [N-1 1 1 2(OH)][NTf2] at 5.0 V. Further, it is shown that [C(2)mim] [C2SO4]/PVDF composites do not show cytotoxic behavior, being suitable for biomedical applications.
机译:基于电活性聚合物的执行器越来越多地用于包括微电子设备和人造肌肉在内的应用中,要求低压操作和可控的开关响应。这项工作报告了基于聚偏二氟乙烯(PVDF)复合材料与10、25和40 wt%N,N,N-三甲基-N-(2-羟乙基)双(三氟甲基磺酰基)酰亚胺铵盐的电致动器的制备([N-1 1 1 2 2(OH)] [NTf2])和1-乙基-3-甲基咪唑乙基硫酸盐([C(2)mim] [C2SO4])离子液体(ILs)通过溶剂浇铸制备。与IL类型无关,它的存在会导致PVDF在压电β相中结晶。样品的结晶度和电导率很大程度上取决于IL的类型和含量。对于具有40 wt%[N-1 1 1 2(OH)] [NTf2]的PVDF / IL复合材料,发现了最高的电导率。在频率为10 mHz的2.0、5.0和10.0 V施加的峰值电压下,PVDF / IL复合材料的应变位移和弯曲随IL类型和含量的变化进行了评估。致动器的应变位移更多地依赖于IL含量而不是IL类型,并且在25%(重量)[N-1 1 1 2(OH)] [NTf2]为5.0的PVDF / IL复合材料中发现了最佳的应变弯曲响应V.进一步显示,[C(2)mim] [C2SO4] / PVDF复合材料不显示细胞毒性行为,适用于生物医学应用。

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