Shen Chen, Lan Ruochen, Huang Rui, Zhang Zhongping, Bao Jinying, Zhang Lanying, Yang Huai
Department of Materials Science and Engineering, College of Engineering, Peking University, Beijing 100871, China.
School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, P. R. China.
ACS Appl Mater Interfaces. 2021 Jan 20;13(2):3221-3227. doi: 10.1021/acsami.0c20628. Epub 2021 Jan 6.
Developing intelligent soft robots capable to perform various responses to different stimulations has been a hot topic in recent years. Liquid crystalline networks (LCNs) have been considered as one of the most promising candidates in the fabrication of soft actuators because of the combination of elasticity of the polymer and anisotropy of the liquid crystals. However, the design and fabrication of advanced LCN materials with outstanding performances and multiple responsivities is highly demanded but still a challenge. In this work, a NIR-UV dual light-responsive LCN actuator was prepared by selectively coating a polydopamine (PDA) layer on an azobenzene-doped LCN film. This actuator presents UV responsivity in the uncoated region because of the photochemical isomerization of azobenzene and NIR sensitivity in the PDA-coated region originated from the striking photothermal effect. Thanks to the reprogrammable PDA coating, this dual-responsive LCN actuator was totally reprogrammable by coating and washing the PDA layer repeatedly. Based on the novel soft actuator, an artificial car that can imitate the switch of the "forward gear" to "neutral gear" of a real car was prepared. In normal mode, the actuator can move forward under NIR irradiation. After UV light excitation, the actuator cannot move under the same NIR irradiation, just like the car with the level in neutral. This novel actuator may provide inspirations for the fabrication of light-driven functional devices and soft actuators.
近年来,开发能够对不同刺激做出各种响应的智能软机器人一直是一个热门话题。由于聚合物的弹性和液晶的各向异性相结合,液晶网络(LCNs)被认为是制造软致动器最有前途的候选材料之一。然而,设计和制造具有优异性能和多种响应性的先进LCN材料的需求很高,但仍然是一个挑战。在这项工作中,通过在偶氮苯掺杂的LCN薄膜上选择性地涂覆聚多巴胺(PDA)层,制备了一种近红外-紫外双光响应LCN致动器。由于偶氮苯的光化学异构化,该致动器在未涂覆区域呈现紫外响应性,而在PDA涂覆区域由于显著的光热效应呈现近红外敏感性。得益于可重新编程的PDA涂层,这种双响应LCN致动器可以通过反复涂覆和清洗PDA层进行完全重新编程。基于这种新型软致动器,制备了一种能够模仿真实汽车从“前进档”切换到“空档”的人造汽车。在正常模式下,致动器在近红外照射下可以向前移动。在紫外光激发后,致动器在相同的近红外照射下无法移动,就像处于空档的汽车一样。这种新型致动器可能为光驱动功能器件和软致动器的制造提供灵感。