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首页> 外文期刊>Macromolecular rapid communications: Publishing the newsletters of the European Polymer Federation >Patterning Surfaces on Azo-Based Multilayer Films via Surface Wrinkling Combined with Visible Light Irradiation
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Patterning Surfaces on Azo-Based Multilayer Films via Surface Wrinkling Combined with Visible Light Irradiation

机译:通过表面起皱和可见光辐照在基于偶氮的多层膜上形成表面图案

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摘要

Here, a simple combined strategy of surface wrinkling with visible light irradiation to fabricate well tunable hierarchical surface patterns on azo-containing multilayer films is reported. The key to tailor surface patterns is to introduce a photosensitive poly( disperse orange 3) intermediate layer into the film/substrate wrinkling system, in which the modulus decrease is induced by the reversible photoisomerization. The existence of a photoinert top layer prevents the photo isomerization-induced stress release in the intermediate layer to some extent. Consequently, the as-formed wrinkling patterns can be modulated over a large area by light irradiation. Interestingly, in the case of selective exposure, the wrinkle wavelength in the exposed region decreases, while the wrinkles in the unexposed region are evolved into highly oriented wrinkles with the orientation perpendicular to the exposed/unexposed boundary. Compared with traditional single layer-based film/substrate systems, the multilayer system consisting of the photosensitive intermediate layer offers unprecedented advantages in the patterning controllability/universality. As demonstrated here, this simple and versatile strategy can be conveniently extended to functional multilayer systems for the creation of prescribed hierarchical surface patterns with optically tailored microstructures.
机译:在此,报道了一种简单的表面起皱与可见光照射相结合的策略,以在含偶氮的多层膜上制造出良好可调的分层表面图案。调整表面图案的关键是将感光性聚(分散橙3)中间层引入薄膜/基材起皱系统,其中模量下降是由可逆的光异构化引起的。光惰性顶层的存在在某种程度上阻止了光异构化引起的中间层应力释放。因此,可以通过光照射在大面积上调制形成的起皱图案。有趣的是,在选择性曝光的情况下,曝光区域中的皱纹波长减小,而未曝光区域中的皱纹演变成高度取向的皱纹,其取向垂直于曝光/未曝光边界。与传统的基于单层的膜/基材系统相比,由光敏中间层组成的多层系统在图案控制/通用性方面提供了前所未有的优势。如此处所示,此简单而通用的策略可以方便地扩展到功能多层系统,以创建具有光学定制的微结构的指定层次表面图案。

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