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Switchable Micropattemed Surface Topographies Mediated by Reversible Shape Memory

机译:可逆形状记忆介导的可切换微图案表面形貌

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Reversibly switching topography on micrometer length scales greatly expands the functionality of stimuli-responsive substrates, Here we report the first usage of reversible shape memory for the actuation of two-way transitions between microscopically patterned substrates, resulting in corresponding modulations of the wetting properties. Reversible switching of the surface topography is achieved through partial melting and recrystallization of a semi-crystalline polyester embossed with microscopic features. This behavior is monitored with atomic force microscopy (AFM) and contact angle measurements. We demonstrate that the magnitude of the contact angle variations depends on the embossment pattern.
机译:在微米长度尺度上可逆地切换形貌极大地扩展了刺激响应性基质的功能。在这里,我们报道了可逆形状记忆的首次使用,用于激活微观图案化基质之间的双向转变,从而导致对润湿性能的相应调节。表面形貌的可逆转换是通过对具有微观特征的半结晶聚酯进行部分熔融和重结晶来实现的。此行为通过原子力显微镜(AFM)和接触角测量进行监控。我们证明了接触角变化的幅度取决于压花图案。

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