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NANOSTRUCTURED TRIBLOCK COPOLYMER NETWORK WITH TAILORABLE ELECTROACTIVE RESPONSE

机译:具有可定制电响应的纳米结构三嵌段嵌段共聚物网络

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In recent years, the use of electroactive polymers (EAPs), which are polymeric materials that respond to an external electrical stimulus by changing shape or size, has been the focus of considerable research effort. While most studies have considered chemically cross-linked homopolymers, only a few reports have addressed the use of physically cross-linked triblock copolymer systems. We have previously demonstrated that triblock copolymer networks swollen by a midblock-selective, nonvolatile solvent constitute excellent candidates as dielectric elastomers, one class of EAP materials. Due to the presence of a molecularly self-organized nanostructure in such materials, this EAP genre is generally referred to as electro-active nanostructured polymers (ENPs). These systems not only exhibit high actuation strains (>200%), but are also amenable to facile processing and recycling. In this study, we examine the electromechanical response of symmetric triblock copolymers possessing styrenic endblocks and a rubbery midblock selectively solvated with an aliphatic mineral oil. Our findings show that the specimen thickness has a significant effect on the electroactive response of the system. Moreover, we are able to correlate the electromechanical properties of ENPs with their mechanical properties.
机译:近年来,使用电活性聚合物(EAPs)作为聚合物材料,可以通过改变形状或大小来响应外部电刺激,这已成为大量研究工作的重点。尽管大多数研究都考虑了化学交联的均聚物,但只有少数报道涉及物理交联的三嵌段共聚物体系的使用。先前我们已经证明,被中嵌段选择性的非挥发性溶剂溶胀的三嵌段共聚物网络是作为EAP材料的一类介电弹性体的极佳候选者。由于此类材料中存在分子自组织纳米结构,因此该EAP类型通常称为电活性纳米结构聚合物(ENP)。这些系统不仅表现出高的驱动应变(> 200%),而且还易于加工和回收。在这项研究中,我们检查了对称的三嵌段共聚物的机电响应,该共聚物具有苯乙烯端嵌段和被脂肪族矿物油选择性溶剂化的橡胶状中嵌段。我们的发现表明,样品厚度对系统的电活性响应有重大影响。此外,我们能够将ENP的机电性能与其机械性能相关联。

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