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一种具有PEDOT-Tos/尼龙-6复合材料的近红外光驱动扭曲螺旋聚合物致动器,用于耐用且可远程控制的人造肌肉。

A NIR-Light-Driven Twisted and Coiled Polymer Actuator with a PEDOT-Tos/Nylon-6 Composite for Durable and Remotely Controllable Artificial Muscle.

作者信息

Hwang Inwook, Mun Seongcheol, Shin Hyungcheol, Yun Sungryul

机构信息

Human Enhancement & Assistive Technology Research Section, Electronics and Telecommunications Research Institute (ETRI), Gajung-ro, Daejeon 218, Korea.

出版信息

Polymers (Basel). 2022 Jan 21;14(3):432. doi: 10.3390/polym14030432.

Abstract

In this paper, we proposed a novel light-driven polymer actuator that could produce remotely controllable tensile stroke in response to near infrared (NIR) light. The light-driven polymer actuator was composed of a twisted and coiled nylon-6 fiber (TCN) and a thin poly(3,4-ethylenedioxythiophene) doped with -toluenesulfonate (PEDOT-Tos) layer. By adopting dip-coating methodology with thermal polymerization process, we constructed a thin and uniform PEDOT-Tos layer on the surface of the three-dimensional TCN structure. Thanks to the PEDOT-Tos layer with excellent NIR light absorption characteristic, the NIR light illumination via a small LEDs array allowed the multiple PEDOT-Tos coated TCN actuators to be photo-thermally heated to a fairly consistent temperature and to simultaneously produce a contractile strain that could be modulated as high as 8.7% with light power. The actuation performance was reversible without any significant hysteresis and highly durable during 3000 cyclic operations via repetitive control of the LEDs. Together with its simple structure and facile fabrication, the light-driven actuator can lead to technical advances in artificial muscles due to its attractive benefits from remote controllability without complex coupled instruments and electromagnetic interference.

摘要

在本文中,我们提出了一种新型的光驱动聚合物致动器,它能够响应近红外(NIR)光产生远程可控的拉伸冲程。该光驱动聚合物致动器由扭曲螺旋尼龙-6纤维(TCN)和掺杂对甲苯磺酸盐的聚(3,4-乙撑二氧噻吩)(PEDOT-Tos)薄层组成。通过采用热聚合过程的浸涂方法,我们在三维TCN结构表面构建了一层薄而均匀的PEDOT-Tos层。由于PEDOT-Tos层具有优异的近红外光吸收特性,通过一个小型发光二极管阵列进行近红外光照射,可使多个涂覆有PEDOT-Tos的TCN致动器被光热加热到相当一致的温度,并同时产生收缩应变,该应变可通过光功率调制高达8.7%。该致动性能是可逆的,没有任何明显的滞后现象,并且在通过发光二极管的重复控制进行3000次循环操作期间具有高度耐久性。连同其简单的结构和简便的制造方法,该光驱动致动器因其具有无需复杂耦合仪器和电磁干扰的远程可控性这一诱人优势,可引领人造肌肉领域的技术进步。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4924/8839836/df48a66e85dc/polymers-14-00432-g001.jpg

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