基于具有纳米纤维结构的正规/非正规聚(3-己基噻吩)共混物的软电活性聚合物致动器

IF 2.3 4区 化学 Q3 POLYMER SCIENCE Polymer Journal Pub Date : 2024-08-13 DOI:10.1038/s41428-024-00949-y
Yoshihiro Murasawa, Tomoya Yoshii, Takumi Suzuki, Takeshi Shimomura
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引用次数: 0

摘要

本研究中使用了一种多规聚(3-己基噻吩)(RR-P3HT)纳米纤维、多规聚(3-己基噻吩)(RRa-P3HT)和聚丁二烯橡胶(PBR)的混合物,制作了一种离子电活性聚合物致动器(IEPA)。用 RRa-P3HT 作为连接链、聚丁二烯橡胶作为柔性基质增强的 RR-P3HT 纳米纤维毡在纳米纤维与电解液接触的地方显示出很大的表面积。因此,高效致动器有望与纳米纤维结构固有的优异载流子流动性协同作用。保留了 RR-P3HT 纳米纤维结构的混合致动器在氧化还原反应后表现出超过 80° 的大幅弯曲角,同时可持续可逆致动 30 多个周期。需要低于 100 mV s-1 的最佳扫描速率才能获得较大的驱动力。因此,与 RRa-P3HT 和 PBR 混合的 RR-P3HT 纳米纤维作为 IEPA 具有显著的功能性,其特点是弯曲角度大且具有持久的循环致动能力。
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Soft electroactive polymer actuators based on regioregular/regiorandom-poly(3-hexylthiophene) blends with a nanofiber structure

An ionic electroactive polymer actuator (IEPA) was fabricated in this study using a blend of regioregular-poly(3-hexylthiophene) (RR-P3HT) nanofibers, regiorandom-P3HT (RRa-P3HT), and polybutadiene rubber (PBR). The RR-P3HT nanofiber mat, which was reinforced with RRa-P3HT as tie chains and PBR as a flexible matrix, exhibited a large surface area where the nanofibers contacted the electrolyte. Therefore, efficient actuation is expected to synergize with the superior carrier mobility inherent in the nanofibrous architecture. The blended actuator, which preserved the RR-P3HT nanofiber structure, exhibited a substantial bending angle exceeding 80° following the redox reaction while sustaining reversible actuation for more than 30 cycles. An optimal scan rate below 100 mV s−1 was required to obtain substantial actuation. Therefore, the RR-P3HT nanofibers blended with RRa-P3HT and PBR demonstrated remarkable functionality as an IEPA, which was characterized by a significant bending angle and enduring cyclic actuation capabilities.

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来源期刊
Polymer Journal
Polymer Journal 化学-高分子科学
CiteScore
5.60
自引率
7.10%
发文量
131
审稿时长
2.5 months
期刊介绍: Polymer Journal promotes research from all aspects of polymer science from anywhere in the world and aims to provide an integrated platform for scientific communication that assists the advancement of polymer science and related fields. The journal publishes Original Articles, Notes, Short Communications and Reviews. Subject areas and topics of particular interest within the journal''s scope include, but are not limited to, those listed below: Polymer synthesis and reactions Polymer structures Physical properties of polymers Polymer surface and interfaces Functional polymers Supramolecular polymers Self-assembled materials Biopolymers and bio-related polymer materials Polymer engineering.
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