石墨烯/胆甾液晶弹性体复合材料实现了具有可调结构颜色的多响应3D可变形软致动器。

IF 12.2 2区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Yuhan Zhang, Baohua Yuan, Yingjie Shi, Xinyu Chen, Zizheng Wang, Longxiang He, Bingxuan Wang, Jiumei Xiao, Meina Yu, Yanzi Gao, Lanying Zhang, Cheng Zou, Ruochen Lan, Huai Yang
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引用次数: 0

摘要

集结构色彩和可控驱动能力于一体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等领域受到广泛关注。然而,同时赋予单层胆甾型液晶弹性体(CLCE)软执行器可逆的三维变形能力和生动的结构颜色变化仍然是一个挑战。本文采用精确控制的蒸发方法,通过还原氧化石墨烯(RGO)沉积诱导的CLCE Janus结构,实现了具有生动结构变色能力的多响应(力、热、光)单层三维可变形软致动器。这种单层结构彩色软致动器可以通过光热效应直接从平面形状转变为三维形状。RGO的引入不仅提高了CLCE的力学性能和色彩饱和度,而且通过光热效应使其具有近红外(NIR)光响应性。此外,由于RGO在溶胀过程中自发沉积而形成的结构梯度,clce呈现出螺旋CLC层和RGO分散的非晶态层的堆叠结构,能够进行多次可逆的三维变形。仿生装置的可逆变形,如模仿盛开的花朵的花瓣状薄膜,模仿植物卷须的薄条,以及蛛网灵感的捕捉网,实现了这种单层RGO/CLCE复合薄膜的应用。这项工作为单层三维可变形软执行器的构建提供了一种简单的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A multi-responsive 3D deformable soft actuator with tunable structural color enabled by a graphene/cholesteric liquid crystal elastomer composite.

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 via 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.

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来源期刊
Materials Horizons
Materials Horizons CHEMISTRY, MULTIDISCIPLINARY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
18.90
自引率
2.30%
发文量
306
审稿时长
1.3 months
期刊介绍: Materials Horizons is a leading journal in materials science that focuses on publishing exceptionally high-quality and innovative research. The journal prioritizes original research that introduces new concepts or ways of thinking, rather than solely reporting technological advancements. However, groundbreaking articles featuring record-breaking material performance may also be published. To be considered for publication, the work must be of significant interest to our community-spanning readership. Starting from 2021, all articles published in Materials Horizons will be indexed in MEDLINE©. The journal publishes various types of articles, including Communications, Reviews, Opinion pieces, Focus articles, and Comments. It serves as a core journal for researchers from academia, government, and industry across all areas of materials research. Materials Horizons is a Transformative Journal and compliant with Plan S. It has an impact factor of 13.3 and is indexed in MEDLINE.
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