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纳米线结构液晶弹性体中的协同粘附与形状变形

Synergistic Adhesion and Shape Deformation in Nanowire-Structured Liquid Crystal Elastomers.

作者信息

Dupont Robert L, Xu Yang, Borbora Angana, Wang Xinyu, Azadi Fatemeh, Havener Kaden, Lewis Broderick, Deng Weichen, Tan Benjamin W, Li Shucong, Zhang Rui, Yao Yuxing, Manna Uttam, Wang Xiaoguang

机构信息

William G. Lowrie Department of Chemical and Biomolecular Engineering, The Ohio State University, Columbus, OH, 43210, USA.

School of Materials Science and Engineering, Tongji University, Shanghai, 201804, China.

出版信息

Adv Mater. 2025 Mar;37(9):e2414695. doi: 10.1002/adma.202414695. Epub 2025 Jan 19.

Abstract

Nature provides many examples of the benefits of nanoscopic surface structures in areas of adhesion and antifouling. Herein, the design, fabrication, and characterization of liquid crystal elastomer (LCE) films are presented with nanowire surface structures that exhibit tunable stimuli-responsive deformations and enhanced adhesion properties. The LCE films are shown to curl toward the side with the nanowires when stimulated by heat or organic solvent vapors. In contrast, when a droplet of the same solvent is placed on the film, it curls away from the nanowire side due to nanowire-induced capillary forces that cause unequal swelling. This characteristic curling deformation is shown to be reversible and can be optimized to match curved substrates, maximizing adhesive shear forces. By using chemical modification, the LCE nanowire films can be given underwater superoleophobicity, enabling oil repellency under a range of harsh conditions. This is combined with the nanowire-induced frictional asymmetry and the reversible shape deformation to create an underwater droplet mixing robot, capable of performing chemical reactions in aqueous environments. These findings demonstrate the potential of nanowire-augmented LCE films for advanced applications in soft robotics, adaptive adhesion, and easy chemical modification, with implications for designing responsive materials that integrate mechanical flexibility with surface functionality.

摘要

自然界提供了许多纳米级表面结构在粘附和防污领域具有优势的例子。在此,本文展示了具有纳米线表面结构的液晶弹性体(LCE)薄膜的设计、制造和表征,这些纳米线表面结构表现出可调的刺激响应变形和增强的粘附性能。结果表明,当受到热或有机溶剂蒸汽刺激时,LCE薄膜会向有纳米线的一侧卷曲。相反,当将同一溶剂的液滴放置在薄膜上时,由于纳米线引起的毛细作用力导致不均匀膨胀,薄膜会从纳米线一侧卷曲离开。这种特征性的卷曲变形被证明是可逆的,并且可以进行优化以匹配弯曲的基底,从而使粘附剪切力最大化。通过化学修饰,LCE纳米线薄膜可以具有水下超疏油性,从而在一系列恶劣条件下实现拒油性能。这与纳米线引起的摩擦不对称性和可逆形状变形相结合,创造了一种水下液滴混合机器人,能够在水环境中进行化学反应。这些发现证明了纳米线增强的LCE薄膜在软机器人技术、自适应粘附和简便化学修饰等先进应用中的潜力,对设计将机械柔韧性与表面功能相结合的响应材料具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e2e/11881676/ca0714cc8cf6/ADMA-37-2414695-g003.jpg

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