材料科学
纳米技术
粘附
生物
润湿
智能材料
微流控
粒子(生态学)
形状记忆合金
激光器
辐照
光电子学
复合材料
光学
海洋学
考古
地质学
自然(考古学)
历史
物理
核物理学
作者
Yanlong Shao,Haixu Dou,Tao Peng,Rujian Jiang,Fan Ye,Yue Jiang,Jie Zhao,Zhihui Zhang,Tailin Yue,Stanislav N. Gorb,Luquan Ren
标识
DOI:10.1021/acsami.2c03589
摘要
Microstructured surfaces with stimuli-responsive performances have aroused great attention in recent years, but it still remains a significant challenge to endow surfaces with precisely controlled morphological changes in microstructures, so as to get the precise control of regional properties (e.g., friction, adhesion). Herein, a kind of carbonyl iron particle-doped shape memory polyurethane micropillar with precisely controllable morphological changes is realized, upon remote near-infrared light (NIR) irradiation. Owing to the reversible transition of micropillars between bent and upright states, the micro-structured surface exhibits precisely controllable low-to-high friction transitions, together with the changes of friction coefficient ranging from ∼0.8 to ∼1.2. Hence, the changes of the surface friction even within an extremely small area can be precisely targeted, under local NIR laser irradiation. Moreover, the water droplet adhesion force of the surface can be reversibly switched between ∼160 and ∼760 μN, demonstrating the application potential in precisely controllable wettability. These features indicate that the smart stimuli-responsive micropillar arrays would be amenable to a variety of applications that require remote, selective, and on-demand responses, such as a refreshable Braille display system, micro-particle motion control, lab-on-a-chip, and microfluidics.
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