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受生物启发的湿度响应型液晶材料:从自适应软致动器到可视化传感器与探测器

Bioinspired humidity-responsive liquid crystalline materials: from adaptive soft actuators to visualized sensors and detectors.

作者信息

Lan Ruochen, Shen Wenbo, Yao Wenhuan, Chen Jingyu, Chen Xinyu, Yang Huai

机构信息

Institute of Advanced Materials & Key Lab of Fluorine and Silicon for Energy Materials and Chemistry of Ministry of Education, College of Chemistry and Chemical Engineering, Jiangxi Normal University, Nanchang 330022, China.

School of Materials Science and Engineering, Peking University, Beijing 100871, China.

出版信息

Mater Horiz. 2023 Jul 31;10(8):2824-2844. doi: 10.1039/d3mh00392b.

Abstract

Inspired by nature, humidity-responsive materials and devices have attracted significant interest from scientists in multiple disciplines, ranging from chemistry, physics and materials science to biomimetics. Owing to their superiorities, including harmless stimulus and untethered control, humidity-driven materials have been widely investigated for application in soft robots, smart sensors and detectors, biomimetic devices and anticounterfeiting labels. Especially, humidity-responsive liquid crystalline materials are particularly appealing due to the combination of programmable and adaptive liquid crystal matrix and humidity-controllability, enabling the fabrication of advanced self-adaptive robots and visualized sensors. In this review, we summarize the recent progress in humidity-driven liquid crystalline materials. First, a brief introduction of liquid crystal materials, including liquid crystalline polymers, cholesteric liquid crystals, blue-phase liquid crystals and cholesteric cellulose nanocrystals is provided. Subsequently, the mechanisms of humidity-responsiveness are presented, followed by the diverse strategies for the fabrication of humidity-responsive liquid crystalline materials. The applications of humidity-driven devices will be presented ranging from soft actuators to visualized sensors and detectors. Finally, we provide an outlook on the development of humidity-driven liquid crystalline materials.

摘要

受自然启发,湿度响应材料与器件已引起多学科科学家的广泛关注,涵盖化学、物理、材料科学以及仿生学等领域。由于其具有无害刺激和无束缚控制等优势,湿度驱动材料已被广泛研究用于软机器人、智能传感器与探测器、仿生器件以及防伪标签等领域。特别是,湿度响应液晶材料因其可编程和自适应液晶矩阵与湿度可控性的结合而格外引人注目,这使得先进的自适应机器人和可视化传感器的制造成为可能。在本综述中,我们总结了湿度驱动液晶材料的最新进展。首先,简要介绍了液晶材料,包括液晶聚合物、胆甾相液晶、蓝相液晶和胆甾型纤维素纳米晶体。随后,阐述了湿度响应机制,接着介绍了制备湿度响应液晶材料的多种策略。还将展示湿度驱动器件从软致动器到可视化传感器与探测器的应用。最后,我们对湿度驱动液晶材料的发展进行了展望。

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