首页|改变本征形变特性:机械超材料启发的液晶弹性体研究进展

改变本征形变特性:机械超材料启发的液晶弹性体研究进展

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液晶弹性体是一类集成了液晶相的各向异性和聚合物基质的力学特性的材料,具有可操控的自主形变能力,在柔性电子、光学器件及生物医疗技术等诸多领域有广阔的应用前景.液晶弹性体的高级功能主要来源于其制备过程的处理方法和几何结构的构筑方式.不同的取向策略和结构的组合能够赋予材料复杂的形变模式和功能特性.近年的研究发现,将机械超材料与液晶弹性体结合能够实现常规材料设计难以实现的功能和特性,实现如双轴驱动、加热膨胀、多维运动等功能,应用在生物医疗、无电子传感、振动控制等领域.本文综述了利用超材料结构设计思路对液晶弹性体的取向及几何结构进行同步构筑的设计方法及其应用,介绍了3D打印技术在构建人造有序结构方面的应用及对材料性能的影响.
Manipulation of inherent deformation traits:research progress in liquid crystal elastomers inspired by mechanical metamaterials
Liquid crystal elastomers are materials that combine the anisotropic properties of liquid crystals and the mechanical properties of polymers,enabling programmable shape changes.Consequently,they have potential applications in various arenas such as flexible electronics,optical devices,and biomedicine.The advanced functional attributes of liquid crystal elastomers primarily derive from the methodologies used in the treatment methods and the fabrication of geometric structures during the preparation process.The different ways to combine the orientation strategies with the structures can endow the materials with complex deformation modes and functions.In recent years,it has been discovered that integrating mechanical metamaterials with liquid crystal elastomers can actualize functionalities and properties that are unattainable with conventional material design,such as biaxial actuation,thermally induced expansion,and omnidirectional motion,which can be applied in arenas including biomedical engineering,electronic-free sensing,and precise vibration management.This paper provides a comprehensive review of the design methods that employ metamaterial concepts for the concurrent structural and orientational construction of liquid crystal elastomers,and their applications,with an introduction on the applications of 3D printing technology in the fabrication of artificial ordered structures and the impact on material performances.

liquid crystal elastomersmechanical metamaterialssmart materials3D printing

王瑾宇、徐艺艺、金梦诗、黄帅、李全

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东南大学 智能材料研究院,江苏 南京 211189

东南大学 化学化工学院,江苏 南京 211189

液晶弹性体 机械超材料 智能材料 三维打印

国家自然科学基金国家自然科学基金东南大学"至善青年学者"项目

5237317352003050

2024

液晶与显示
中科院长春光学精密机械与物理研究所 中国光学光电子行业协会液晶分会 中国物理学会液晶分会

液晶与显示

CSTPCD北大核心
影响因子:0.964
ISSN:1007-2780
年,卷(期):2024.39(3)
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