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首页> 外文期刊>Polymer chemistry >Photo-switching of surface wettability on micropatterned photopolymers for fast transport of water droplets over a long-distance
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Photo-switching of surface wettability on micropatterned photopolymers for fast transport of water droplets over a long-distance

机译:在微型图案的光聚合物上进行表面润湿性的照片切换,以便在长距离上快速运输水滴

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摘要

The present work addresses the directional movement of water droplets (2 mu L droplet) across a photopolymer surface over a distance of more than 20 mm. The long-distance movement of the droplet is achieved by inscribing multi-gradients onto the surface, which is realized by a photo-induced increase in wettability amplified by a change in surface texture. To create highly hydrophobic surface characteristics, photo-reactive resin formulations containing an o-nitrobenzyl alcohol derivative with terminal acrylate groups, a multi-functional thiol and a fluorinated methacrylate monomer are patterned by visible light-assisted nanoimprint lithography. The needle-like surface microstructures in combination with the fluorine groups of the methacrylate monomer enable the formation of photopolymers with static water contact angles in the range of 140 degrees. Subsequent irradiation of the photopolymer with light in the UV-A spectral region leads to the localized formation of polar groups such as carboxylic acids (photolysis of the o-nitrobenzyl ester moieties) and sulfonic acids (photooxidation of free thiol groups). Along with the change in the chemical surface composition, prolonged UV exposure under air erodes the surface microstructures leading to fully wettable surfaces. The controlled photo-switching between highly hydrophobic (140 degrees) and fully wettable (7 degrees) photopolymer surfaces enables the introduction of wettability gradients by asymmetrical UV irradiation. Linear-shaped gradients rapidly drive a water droplet over a distance of 14 mm. By inscribing the wettability gradient in wedge-shaped patterns, a Laplace pressure gradient is additionally formed, which allows a directed movement of water droplets over a distance of 22 mm.
机译:目前的工作解决了水滴(2 Mu L液滴)在光聚合物表面上的方向运动,距离超过20 mm。液滴的长距离运动是通过将多级别刻在表面上来实现的,这是通过照片诱导的表面纹理变化扩大润湿性的增加而实现的。为了创建高度疏水的表面特征,具有末端丙烯酸酯基团,多功能硫醇和氟甲基丙烯酸酯单体的光反应树脂制剂由可见光的光辅助纳米粘着岩性构图模式化。针状表面微观结构与甲基丙烯酸酯单体的氟基团结合使用,可以在140度的范围内形成具有静态水接触角的光聚合物。随后在UV-A光谱区域对光聚合物进行光聚合物的辐照导致极地的局部形成,例如羧酸(O-硝基苯酯部分的光解)和磺酸(自由硫醇基团的光氧化)。随着化学表面组成的变化,空气下的较长紫外线暴露侵蚀了表面微观结构,从而导致完全润湿的表面。在高度疏水(140度)和完全润湿(7度)光聚合物表面之间的受控光相关可以通过不对称的UV辐照引入可湿性梯度。线性梯度迅速将水滴驱动到14毫米的距离上。通过在楔形图案中刻画润湿性梯度,还形成了拉普拉斯压力梯度,从而使水滴在22毫米的距离上进行了定向运动。

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