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智能褶皱界面:通过动态各向异性褶皱实现聚合物表面的图案化、变形和编码

Smart Wrinkled Interfaces: Patterning, Morphing, and Coding of Polymer Surfaces by Dynamic Anisotropic Wrinkling.

作者信息

Liu Ning, Lu Yenie, Li Ziyue, Zhao Hongyang, Yu Qingyue, Huang Yaxin, Yang Jiakuan, Huang Liang

机构信息

Hubei Key Laboratory of Multi-media Pollution Cooperative Control in Yangtze Basin, School of Environmental Science & Engineering, Huazhong University of Science and Technology, Wuhan, Hubei 430074, China.

出版信息

Langmuir. 2024 Sep 10;40(36):18837-18856. doi: 10.1021/acs.langmuir.4c02162. Epub 2024 Aug 29.

Abstract

In contrast to traditional static surfaces, smart patterned surfaces with periodical and reversible morphologies offer limitless opportunities for encoding surface functions and properties on demand, facilitating their widespread application as functional building blocks in various devices. Advances in intelligently controlling the macroscopic properties of these smart surfaces have been accomplished through various techniques (such as three-dimensional printing, imprint lithography and femtosecond laser) and responsive materials. In contrast to the sophisticated techniques above, dynamic anisotropic wrinkling, taking advantage of dynamic programmable manipulation of surface wrinkling and its orientation, offers a powerful alternative for fabricating dynamic periodical patterns due to its spontaneous formation, versatility, convenient scale-up fabrication, and sensitivity to various stimuli. This review comprehensively summarizes recent advances in smart patterned surfaces with dynamic oriented wrinkles, covering design principles, fabrication techniques, representative types of physical and chemical stimuli, as well as fine-tuning of wrinkle dimensions and orientation. Finally, advanced applications of these smart patterned surfaces are presented, along with a discussion of current challenges and future prospects in this rapidly evolving field. This review would offer some insights and guidelines for designing and engineering novel stimuli-responsive smart wrinkled surfaces, thereby facilitating their sustainable development and progressing toward commercialization.

摘要

与传统的静态表面相比,具有周期性和可逆形态的智能图案化表面为按需编码表面功能和特性提供了无限机会,有助于其作为各种设备中的功能构建块得到广泛应用。通过各种技术(如三维打印、压印光刻和飞秒激光)以及响应材料,在智能控制这些智能表面的宏观特性方面已经取得了进展。与上述复杂技术相比,动态各向异性皱纹利用表面皱纹及其取向的动态可编程操纵,由于其自发形成、通用性、方便的放大制造以及对各种刺激的敏感性,为制造动态周期性图案提供了一种有力的替代方法。本文综述全面总结了具有动态定向皱纹的智能图案化表面的最新进展,涵盖设计原理、制造技术、物理和化学刺激的代表性类型,以及皱纹尺寸和取向的微调。最后,介绍了这些智能图案化表面的先进应用,并讨论了这个快速发展领域当前面临的挑战和未来前景。本文综述将为设计和工程新型刺激响应智能皱纹表面提供一些见解和指导方针,从而促进其可持续发展并朝着商业化迈进。

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