Zhang Yuhan, Yuan Baohua, Shi Yingjie, Chen Xinyu, Wang Zizheng, He Longxiang, Wang Bingxuan, Xiao Jiumei, Yu Meina, Gao Yanzi, Zhang Lanying, Zou Cheng, Lan Ruochen, Yang Huai
Beijing Advanced Innovation Center for Materials Genome Engineering, Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, P. R. China.
College of Chemistry and Materials, Jiangxi Normal University, Nanchang 330022, P. R. China.
Mater Horiz. 2025 Mar 17;12(6):2014-2024. doi: 10.1039/d4mh01604a.
Intelligent soft robots that integrate both structural color and controllable actuation ability have attracted substantial attention for constructing biomimetic systems, biomedical devices, and soft robotics. However, simultaneously endowing single-layer cholesteric liquid crystal elastomer (CLCE) soft actuators with reversible 3D deformability and vivid structural color changes is still challenging. Herein, a multi-responsive (force, heat and light) single-layer 3D deformable soft actuator with vivid structural color-changing ability is realized through the reduced graphene oxide (RGO) deposition-induced Janus structure of the CLCE using a precisely-controlled evaporation method. This single-layer structural color soft actuator can directly transform from a flat shape to a 3D shape through the photothermal effect. The introduction of RGO not only improves the mechanical properties and color saturation of the CLCE, but also endows it with near-infrared (NIR) light responsiveness the photothermal effect. Moreover, due to the structural gradient resulting from the spontaneous deposition of RGO during the deswelling process, CLCEs show a stacked structure of the helical CLC layer and RGO-dispersed amorphous layer, which are capable of undergoing multiple reversible 3D deformations. The reversible deformations of biomimetic devices such as petal-like films imitating blooming flowers, thin strips imitating plant tendrils, and a cobweb-inspired catching net are achieved to demonstrate applications of this single-layer RGO/CLCE composite film. This work provides a simple strategy for the construction of single-layer 3D deformable soft actuators.
集成了结构色和可控驱动能力的智能软机器人,在构建仿生系统、生物医学设备和软机器人方面引起了广泛关注。然而,要同时赋予单层胆甾相液晶弹性体(CLCE)软致动器可逆的3D变形能力和生动的结构颜色变化,仍然具有挑战性。在此,通过使用精确控制的蒸发方法,利用氧化石墨烯(RGO)沉积诱导CLCE的Janus结构,实现了一种具有生动结构颜色变化能力的多响应(力、热和光)单层3D可变形软致动器。这种单层结构颜色软致动器可以通过光热效应直接从平面形状转变为3D形状。RGO的引入不仅提高了CLCE的机械性能和颜色饱和度,还赋予其近红外(NIR)光响应性——光热效应。此外,由于在去溶胀过程中RGO自发沉积导致的结构梯度,CLCE呈现出螺旋CLC层和RGO分散的非晶层的堆叠结构,能够经历多次可逆的3D变形。实现了诸如模仿花朵绽放的花瓣状薄膜、模仿植物卷须的细条以及受蜘蛛网启发的捕捉网等仿生装置的可逆变形,以展示这种单层RGO/CLCE复合膜的应用。这项工作为构建单层3D可变形软致动器提供了一种简单策略。