首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Low voltage actuator using ionic polymer metal nanocomposites based on a miscible polymer blend
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Low voltage actuator using ionic polymer metal nanocomposites based on a miscible polymer blend

机译:使用基于可混溶聚合物共混物的离子聚合物金属纳米复合材料的低压致动器

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摘要

Bio-compatible actuators are required to exhibit a large actuation displacement and force at a low voltage for various applications in liquid environments, including swimming robots, biomedical catheters, biomimetic sensory-actuators, and drug delivery micro-pumps. Recently, ionic polymer metal nanocomposites (IPMNCs) based on Nafion have been widely used for bio-compatible actuators; however, they have been demonstrated to operate only at high voltages in the range of 2 to 5 V, resulting in water hydrolysis problems which are accompanied by a degradation of actuation performance. Here, we show that IPMNC actuators based on a poly(vinylidenefluoride-co-trifluoroethylene) [P(VDF-TrFE)]/polyvinylpyrrolidone (PVP)/polystyrene sulfonic acid (PSSA) polymer blend membrane can exhibit a large actuation displacement and force at a low voltage of 1 V. Due to the ferroelectric nature of P(VDF-TrFE), the large dipole moment of P(VDF-TrFE) can cause strong intermolecular bonding, causing the P(VDF-TrFE)/PVP/PSSA blend membrane to be miscible. We found that the P(VDF-TrFE)/PVP/PSSA blend membrane with a blending ratio of 30/15/55 can produce the highest proton conductivity (0.0065 S cm(-1)) and ion exchange capacity (2.95 meq g(-1)) as compared to those of the commercial Nafion membrane, due to its miscible nature. Our IPMNC exhibits both an enhanced actuation displacement and force by up to 2 times in comparison with those of the IPMNC based on the commercial Nafion-based ionic membrane. Our P(VDF-TrFE)/PVP/PSSA IPMNC shows a stable actuation performance for up to 2200 cycles in hydrated conditions.
机译:对于液体环境中的各种应用,包括游泳机器人,生物医学导管,仿生感觉致动器和药物输送微型泵,要求生物相容的致动器在低压下表现出较大的致动位移和低压力。最近,基于Nafion的离子聚合物金属纳米复合材料(IPMNC)已被广泛用于生物相容性致动器。然而,已经证明它们只能在2至5 V的高电压下工作,从而导致水水解问题,并伴随致动性能下降。在这里,我们显示基于聚偏二氟乙烯-共-三氟乙烯[P(VDF-TrFE)] /聚乙烯吡咯烷酮(PVP)/聚苯乙烯磺酸(PSSA)聚合物共混膜的IPMNC执行器可以表现出较大的驱动位移和作用力1 V的低电压。由于P(VDF-TrFE)的铁电特性,P(VDF-TrFE)的大偶极矩会引起强分子间键合,从而导致P(VDF-TrFE)/ PVP / PSSA共混物膜要混溶。我们发现,混合比为30/15/55的P(VDF-TrFE)/ PVP / PSSA混合膜可以产生最高的质子传导率(0.0065 S cm(-1))和离子交换容量(2.95 meq g(由于其可混溶的性质,与市售的Nafion膜相比-1))。与基于商用Nafion离子膜的IPMNC相比,我们的IPMNC的致动位移和作用力均提高了2倍。我们的P(VDF-TrFE)/ PVP / PSSA IPMNC在水合条件下显示了高达2200个循环的稳定驱动性能。

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