液晶弹性体的排列策略和变形机制:从基础到高级应用。

IF 4.2 3区 化学 Q2 POLYMER SCIENCE
Ming Cheng, Zhenming Wang, Zixuan Wu, Silin Yuan, Mengjia Cen, Jiawei Wang, Yan Jun Liu
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引用次数: 0

摘要

液晶弹性体(LCE)是一种智能材料,它融合了液晶的各向异性和聚合物的弹性,能够在各种外部刺激下发生巨大、可逆的形状变化。这些与众不同的特性使 LCE 很有希望应用于致动器、软机器人、传感器和光学领域。LCE 的变形行为从根本上说是由介质分子的配位决定的,介质分子在受到刺激时会从有序状态转变为无序状态,从而产生可控的形状变化。人们不断探索各种利用介观分子操作的配准技术,以此来有效地驱动变形行为。本综述概述了主要的配准技术,包括表面锚定、场效应和机械配准,并探讨了这些方法如何支持为特定应用设计量身定制的形态特性。本综述讨论了 LCE 中配准与变形行为之间的关系,全面概述了基于配准的变形设计策略。此外,综述还强调了 LCE 在人工肌肉、致动器和可重构光学器件等先进应用中的巨大潜力。通过提供对 LCE 对齐和变形的基础性理解,本综述旨在激发更多科学创新,推动 LCE 设计和应用的技术进步。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Alignment Strategies and Morphing Mechanisms in Liquid Crystal Elastomers: From Fundamentals to Advanced Applications.

Liquid crystal elastomers (LCEs) are smart materials that integrate the anisotropic properties of liquid crystals and the elasticity of polymers, enabling large, reversible shape changes in response to various external stimuli. These distinctive properties make LCEs a promising candidate for applications in actuators, soft robotics, sensors, and optics. The morphing behaviors of LCEs are fundamentally governed by the alignment of mesogenic molecules, which transition from ordered to disordered states upon stimulation, resulting in controllable shape transformations. Various alignment techniques exploiting the manipulation of mesogenic molecules are continuously explored as a way to effectively actuate morphing behaviors. This review provides an overview of key alignment techniques, including surface anchoring, field effect, and mechanical alignment, and explores how these methods support the design of tailored morphing properties for specific applications. The relationship between alignment and morphing behaviors in LCEs is discussed, offering a comprehensive overview of alignment-based morphing design strategies. Furthermore, the review highlights the significant potential of LCEs in advanced applications such as artificial muscles, actuators, and reconfigurable optical devices. By providing a foundational understanding of LCEs' alignment and morphing, this review aims to inspire more scientific innovations and technical advances in their design and application.

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来源期刊
Macromolecular Rapid Communications
Macromolecular Rapid Communications 工程技术-高分子科学
CiteScore
7.70
自引率
6.50%
发文量
477
审稿时长
1.4 months
期刊介绍: Macromolecular Rapid Communications publishes original research in polymer science, ranging from chemistry and physics of polymers to polymers in materials science and life sciences.
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