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Reversible wettability of hybrid organic/inorganic surfaces of systems upon light irradiation/storage cycles

机译:光照/存储循环后系统的有机/无机杂化表面的可逆润湿性

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In this work we present hybrid organic/inorganic structures that can exhibit reversible surface wettability, altered in a controllable manner. In particular, we use the method of photo-patterning to produce polymeric SU-8 pillars of specific geometries, onto which we subsequently deposit colloidal TO_2 nanorods. In this way, we combine the microroughness of the polymeric pillars with the nanoroughness of the nanorod-coating to create highly hydrophobic surfaces. The hydrophobicity of these systems can be changed reversibly into hydrophilicity upon irradiation of the hybrid structures with pulsed UV laser light. This behaviour is due to the well-known property of TO_2, that becomes superhydrophilic upon UV light irradiation. This property is reversible and we monitor the recovery of our hybrid polymeric/inorganic-nanorods structures to their initial hydrophobic character upon dark storage and heating., The wetting behaviour has been modelled and analysed according to the surface geometry. The direct implementation of such structures into microfluidics devices is demonstrated.
机译:在这项工作中,我们提出了混合的有机/无机结构,它们可以表现出可逆的表面润湿性,并且以可控的方式改变。特别是,我们使用光致图案化的方法来生产具有特定几何形状的聚合SU-8柱,随后在其上沉积胶体TO_2纳米棒。通过这种方式,我们将聚合物柱的微粗糙度与纳米棒涂层的纳米粗糙度相结合,以创建高度疏水的表面。当用脉冲紫外激光照射混合结构时,这些系统的疏水性可以可逆地变成亲水性。此行为归因于TO_2的众所周知的属性,该属性在UV光照射下变得超亲水。这种性质是可逆的,我们在黑暗的储存和加热条件下监测我们的混合聚合物/无机-纳米结构的恢复至其初始疏水性。根据表面几何形状对润湿行为进行了建模和分析。证明了将这种结构直接实施到微流体装置中。

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