用于生物力学监测和人机交互的机械变色和离子导电胆甾醇液晶弹性体。

IF 12.2 2区 材料科学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Jiazhe Ma, Yanzhao Yang, Xuan Zhang, Pan Xue, Cristian Valenzuela, Yuan Liu, Ling Wang and Wei Feng
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引用次数: 0

摘要

胆固醇液晶弹性体(CLCE)将橡胶弹性与自组装螺旋纳米结构的结构颜色相结合,对于仿生皮肤、自适应光学和软机器人等各种应用至关重要。尽管取得了巨大的进步,但将电传感和变色特性集成到单个CLCE系统中是具有挑战性的。在这里,我们报道了通过原位Michael加成和CLCE前体在硅烷官能化聚合物离子液体网络上的自由基光聚合来设计和合成离子导电胆甾醇液晶弹性体(iCLCE),其中在界面处形成了牢固的共价化学键。由于优异的机械变色性和离子导电性,所得的iCLCE在机械拉伸时表现出大范围的动态变色和电学传感功能,可用于关节弯曲过程中的生物力学监测。重要的是,电容式弹性体传感器可以通过简单堆叠iCLCE来构建,其中光学和电气双信号报告性能允许直观地视觉定位压力强度和分布。此外,iCLCE的概念验证应用已经通过人机交互系统进行了演示。本文公开的研究可以为开发仿生体感材料提供新的见解,用于人机交互、假肢和智能机器人等不同领域的新兴应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Mechanochromic and ionic conductive cholesteric liquid crystal elastomers for biomechanical monitoring and human–machine interaction†

Mechanochromic and ionic conductive cholesteric liquid crystal elastomers for biomechanical monitoring and human–machine interaction†

Cholesteric liquid crystal elastomers (CLCEs) that combine rubbery elasticity with structural colour from self-assembled helical nanostructures are of paramount importance for diverse applications such as biomimetic skins, adaptive optics and soft robotics. Despite great advances, it is challenging to integrate electrical sensing and colour-changing characteristics in a single CLCE system. Here, we report the design and synthesis of an ionic conductive cholesteric liquid crystal elastomer (iCLCE) through in situ Michael addition and free-radical photopolymerization of CLCE precursors on silane-functionalized polymer ionic liquid networks, in which robust covalent chemical bonding was formed at the interface. Thanks to superior mechanochromism and ionic conductivity, the resulting iCLCEs exhibit dynamic colour-changing and electrical sensing functions in a wide range upon mechanical stretching, and can be used for biomechanical monitoring during joint bending. Importantly, a capacitive elastomeric sensor can be constructed through facilely stacking iCLCEs, where the optical and electrical dual-signal reporting performance allows intuitive visual localization of pressure intensity and distribution. Moreover, proof-of-concept application of the iCLCEs has been demonstrated with human-interactive systems. The research disclosed herein can provide new insights into the development of bioinspired somatosensory materials for emerging applications in diverse fields such as human–machine interaction, prostheses and intelligent robots.

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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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