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用于强韧光驱动致动器的主链偶氮苯聚(醚酯)多嵌段共聚物

Main-Chain Azobenzene Poly(ether ester) Multiblock Copolymers for Strong and Tough Light-Driven Actuators.

作者信息

He Chong, Xiao Yang, Wang Sheng, Lu Huanjun, Li Xiaohong, Xu Lin, Wang Chao, Tu Yingfeng

机构信息

Jiangsu Key Laboratory of Advanced Functional Polymer Design and Application, College of Chemistry, Chemical Engineering and Materials Science, Soochow University, Suzhou 215123, China.

Beijing Yanshan Petrochemical High-Tech Company, Ltd., Beijing 102500, China.

出版信息

ACS Appl Mater Interfaces. 2024 Oct 23;16(42):56469-56480. doi: 10.1021/acsami.4c13375. Epub 2024 Oct 9.

Abstract

The stimulus-responsive polymeric materials have attracted great research interest, especially those remotely manipulated materials with potential applications in actuators and soft robotics. Here we report a photoresponsive main-chain actuator based on azobenzene poly(ether ester) multiblock copolymer (mBCP) thermoplastic elastomers, (PTAD--PTMO--PTAD), which were synthesized by a cascade polycondensation-coupling ring-opening polymerization method using poly(tetramethylene oxide) (PTMO) and azobenzene-containing cyclic oligoesters (COTADs) as monomers. The thermal, mechanical, and microphase separation behaviors of mBCPs could be flexibly tuned by altering the ratios of soft-to-hard segments and block number (). The oriented azobenzene mBCP fibers were prepared by melt spinning, showing reversible photoresponsive properties with remarkably high strength (∼1000 MPa) and high elongation at break comparable to spider silks. Fast photoinduced bending and contraction were successfully achieved in these fibers with high work and power densities and energy conversion efficiency, enabling it to lift up about 250 times of its own weight. Moreover, it can take out materials inside the tube by UV-light control. These fibers could be applied in light-driven actuators or telecontrolled robot arms.

摘要

刺激响应性聚合物材料引起了极大的研究兴趣,尤其是那些在致动器和软机器人技术中有潜在应用的远程操控材料。在此,我们报道了一种基于偶氮苯聚(醚酯)多嵌段共聚物(mBCP)热塑性弹性体(PTAD - PTMO - PTAD)的光响应主链致动器,该弹性体是通过以聚四氢呋喃(PTMO)和含偶氮苯的环状低聚酯(COTADs)为单体的级联缩聚 - 开环聚合方法合成的。通过改变软段与硬段的比例和嵌段数(),可以灵活调节mBCP的热性能、力学性能和微相分离行为。通过熔融纺丝制备了取向的偶氮苯mBCP纤维,其具有可逆的光响应特性,强度极高(约1000 MPa),断裂伸长率与蜘蛛丝相当。这些纤维成功实现了快速的光致弯曲和收缩,具有高的功密度、功率密度和能量转换效率,能够举起约自身重量250倍的物体。此外,它可以通过紫外光控制取出管内的材料。这些纤维可应用于光驱动致动器或遥控机器人手臂。

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