Dipartimento di Fisica E. Pancini, Università degli Studi di Napoli Federico II , Complesso Universitario di Monte Sant'Angelo, Via Cintia, 80126 Naples, Italy.
Dipartimento di Scienze Chimiche, Università degli Studi di Napoli Federico II , Complesso Universitario di Monte Sant'Angelo, Via Cintia, 80126 Naples, Italy.
ACS Appl Mater Interfaces. 2017 Sep 6;9(35):30133-30142. doi: 10.1021/acsami.7b08025. Epub 2017 Aug 23.
The directional light-induced mass migration phenomenon arising in the photoresponsive azobenzene-containing materials has become an increasingly used approach for the fabrication of controlled tridimensional superficial textures. In the present work we demonstrate the tailoring of the superficial wettability of an azopolymer by means of the light-driven reconfiguration of an array of imprinted micropillars. Few simple illumination parameters are controlled to induce nontrivial wetting effects. Wetting anisotropy with controlled directionality, unidirectional spreading, and even polarization-intensity driven two-dimensional paths for wetting anisotropy are obtained starting from a single pristine pillar geometry. The obtained results prove that the versatility of the light-reconfiguration process, together with the possibility of reversible reshaping at reduced costs, represents a valid approach for both applications and fundamental studies in the field of geometry-based wettability of solid surfaces.
光致各向异性质量迁移现象在光响应偶氮苯材料中逐渐得到广泛应用,为可控三维表面形貌的制备提供了一种新方法。本工作通过光驱动的印迹微柱阵列的重新配置,实现了对聚合物表面润湿性的调控。通过控制几个简单的光照参数,诱导出复杂的润湿效应。从单个原始微柱的几何形状出发,获得了具有可控方向性的润湿各向异性、单向扩展,甚至偏振强度驱动的二维润湿各向异性路径。研究结果证明,光重配置过程的多功能性以及以较低成本实现可重复形状的可能性,为基于几何形状的固体表面润湿性的应用和基础研究提供了一种有效的方法。