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Geometry- and Length Scale-Dependent Deformation and Recovery on Micro- and Nanopatterned Shape Memory Polymer Surfaces

机译:微米和纳米图形记忆聚合物表面的几何和长度尺度依赖性变形和恢复

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摘要

Micro- and nanoscale surface textures, when optimally designed, present a unique approach to improve surface functionalities. Coupling surface texture with shape memory polymers may generate reversibly tuneable surface properties. A shape memory polyetherurethane is used to prepare various surface textures including 2 μm- and 200 nm-gratings, 250 nm-pillars and 200 nm-holes. The mechanical deformation via stretching and recovery of the surface texture are investigated as a function of length scales and shapes. Results show the 200 nm-grating exhibiting more deformation than 2 μm-grating. Grating imparts anisotropic and surface area-to-volume effects, causing different degree of deformation between gratings and pillars under the same applied macroscopic strain. Full distribution of stress within the film causes the holes to deform more substantially than the pillars. In the recovery study, unlike a nearly complete recovery for the gratings after 10 transformation cycles, the high contribution of surface energy impedes the recovery of holes and pillars. The surface textures are shown to perform a switchable wetting function. This study provides insights into how geometric features of shape memory surface patterns can be designed to modulate the shape programming and recovery, and how the control of reversibly deformable surface textures can be applied to transfer microdroplets.
机译:当对微米和纳米级表面纹理进行优化设计时,它们会提供一种独特的方法来改善表面功能。将表面纹理与形状记忆聚合物耦合可能会产生可逆调整的表面特性。形状记忆聚醚氨酯用于制备各种表面纹理,包括2μm和200μnm的光栅,250μnm的柱子和200μnm的孔。研究了通过拉伸和恢复表面纹理引起的机械变形,该变形是长度尺度和形状的函数。结果表明200 nm光栅比2μm光栅显示出更大的变形。光栅会产生各向异性和表面积到体积的效果,在相同的宏观应变下,光栅和柱子之间会引起不同程度的变形。应力在膜内的完全分布会导致孔比支柱变形更大。在恢复研究中,与10个转换周期后光栅几乎完全恢复不同,表面能的高贡献阻碍了孔和柱的恢复。显示了表面纹理以执行可切换的润湿功能。这项研究提供了有关如何设计形状记忆表面图案的几何特征来调节形状编程和恢复的见解,以及如何将可逆变形表面纹理的控制应用于转移微滴的见解。

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  • 作者

    Lee, Wei Li; Low, Hong Yee;

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  • 年度 2016
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  • 原文格式 PDF
  • 正文语种 en_US
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