Department of Electrical and Electronic Engineering, Southern University of Science and Technology, Shenzhen, 518055, China.
Smart Photonic Materials, Faculty of Engineering and Natural Sciences, Tampere University, P.O. Box 541, Tampere, FI-33101, Finland.
Adv Sci (Weinh). 2022 Jan;9(1):e2103090. doi: 10.1002/advs.202103090. Epub 2021 Oct 28.
Recent efforts in stimuli-responsive soft materials have enabled wirelessly controlled actuation with increasing degrees of freedom, yielding miniature robots capable of various locomotion in open environments such as on a plane or inside fluids. However, grand challenges remain in harnessing photomechanical deformation to induce locomotion and control of friction during the movement, especially for robotic actuations within constrained spaces. Here, the authors report a centimeter-long polymer strip made of a liquid crystal network that is capable of versatile light-fueled motions along a human hair. The soft polymer robot can translocate directionally upon temporally modulated excitation and climb vertically through friction control with light. A self-oscillating strip is demonstrated to continuously translocate along the hair upon a constant light stimulus, and its gaiting is associated to the smoothness of the hair surface. The results offer new insights to small-scale photo-actuator, mechanical control, and automation in soft micro robotics.
近期在刺激响应型软材料方面的努力实现了具有更高自由度的无线控制致动,产生了能够在开放环境中(如在飞机上或在流体内部)进行各种运动的微型机器人。然而,在利用光机械变形来诱导运动和控制运动过程中的摩擦力方面仍然存在重大挑战,特别是对于受限空间内的机器人致动。在这里,作者报告了一种由液晶网络制成的厘米长聚合物条,它能够在人发上进行多种光驱动运动。软聚合物机器人可以在时间调制激励下沿人发定向移动,并且可以通过光控制来实现垂直爬升。通过恒光刺激,展示了一个自振荡条能够沿人发连续平移,并且其步态与毛发表面的光滑度有关。这些结果为小型光致动器、机械控制和软微型机器人自动化提供了新的见解。