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具有可调润湿性和光学特性的高拉伸性、无裂纹皱纹表面的可控制备

Controlled Preparation of Highly Stretchable, Crack-Free Wrinkled Surfaces with Tunable Wetting and Optical Properties.

作者信息

Wang Qiaofan, Yu Senjiang, Ye Qianqian, Yang Bo, Zhang Yongju, Wang Xin, Li Lingwei

机构信息

Key Laboratory of Novel Materials for Sensor of Zhejiang Province, College of Materials and Environmental Engineering, Hangzhou Dianzi University, Hangzhou 310018, P. R. China.

College of Mechanical Engineering, Taizhou University, Jiaojiang 318000, P. R. China.

出版信息

Langmuir. 2024 Jan 30;40(4):2102-2110. doi: 10.1021/acs.langmuir.3c02920. Epub 2024 Jan 16.

Abstract

Constructing wrinkles by utilizing strain-driven surface instability in film-substrate systems is a general method to prepare micronano structures, which have a wide range of applications in smart surfaces and devices such as flexible electronics, reversible wetting, friction, and optics. However, cracks generated during the preparation and use process significantly affect the uniformity of wrinkled surfaces and degrade the functional properties of the film devices. The realization of crack-free wrinkles with high stretchability in hard film systems is still a great challenge. Here, we report on a facile technique for controllable preparation of large-area, highly stretchable, crack-free wrinkled surfaces by ultraviolet ozone (UVO) treatment of Ecoflex. The thickness dependence of the wrinkles and the in situ wrinkling process during mechanical loading are investigated. The wrinkles including striped, labyrinth-like, herringbone, and transitional structures are controllable by changing strain mode (uniaxial or biaxial), loading history (simultaneous or sequential), strain anisotropy, and gradient loading. The wrinkled surfaces obtained using UVO-treated Ecoflex have tunable wetting and optical properties and can maintain excellent mechanical stability under large strains. This study provides a facile method for the preparation of large-area, crack-free wrinkles, which is simple, fast, low-cost, and robust. The resulting wrinkled surfaces remain stable under high stretching, which is beneficial for many practical applications, especially in the cases of large strains.

摘要

利用薄膜 - 基底系统中应变驱动的表面不稳定性构建皱纹是制备微米纳米结构的常用方法,这些结构在智能表面和设备中具有广泛应用,如柔性电子、可逆润湿、摩擦和光学领域。然而,在制备和使用过程中产生的裂纹会显著影响皱纹表面的均匀性,并降低薄膜器件的功能特性。在硬质薄膜系统中实现具有高拉伸性的无裂纹皱纹仍然是一个巨大挑战。在此,我们报道了一种通过对Ecoflex进行紫外臭氧(UVO)处理来可控制备大面积、高拉伸性、无裂纹皱纹表面的简便技术。研究了皱纹的厚度依赖性以及机械加载过程中的原位皱纹形成过程。通过改变应变模式(单轴或双轴)、加载历史(同时或顺序)、应变各向异性和梯度加载,可以控制包括条纹状、迷宫状、人字形和过渡结构在内的皱纹。使用UVO处理的Ecoflex获得的皱纹表面具有可调的润湿和光学特性,并且在大应变下能够保持优异的机械稳定性。本研究提供了一种制备大面积、无裂纹皱纹的简便方法,该方法简单、快速、低成本且稳健。所得的皱纹表面在高拉伸下保持稳定,这对许多实际应用有益,特别是在大应变情况下。

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