Ahmad Shahbaz, Egilmez M, Iqbal M, Ibrahim T, Khamis M, Alnaser Ali S
Department of Physics, American University of Sharjah, Sharjah, United Arab Emirates.
Department of Chemical Engineering, American University of Sharjah, Sharjah, United Arab Emirates.
Front Chem. 2021 Dec 3;9:792641. doi: 10.3389/fchem.2021.792641. eCollection 2021.
Ultrafast laser structuring has proven to alter the wettability performance of surfaces drastically due to controlled modification of the surface roughness and energy. Surface alteration can be achieved also by coating the surfaces with functional materials with enhanced durability. On this line, robust and tunable surface wettability performance can be achieved by the synergic effects of ultrafast laser structuring and coating. In this work, femtosecond laser-structured stainless steel (SS-100) meshes were used to host the growth of NaAlSiO-HO zeolite films. Contact angle measurements were carried on pristine SS-100 meshes, zeolite-coated SS-100 meshes, laser-structured SS-100 meshes, and zeolite-coated laser-structured SS-100 meshes. Enhanced hydrophilic behavior was observed in the zeolite-coated SS-100 meshes (contact angle 72°) and in laser-structured SS-100 meshes (contact angle 41°). On the other hand, superior durable hydrophilic behavior was observed for the zeolite-coated laser-structured SS-100 meshes (contact angle 14°) over an extended period and reusability. In addition, the zeolite-coated laser-structured SS-100 meshes were subjected to oil-water separation tests and revealed augmented effectuation for oil-water separation.
超快激光结构化已被证明可通过对表面粗糙度和能量进行可控改性,极大地改变表面的润湿性。通过用具有增强耐久性的功能材料涂覆表面,也可以实现表面改性。基于此,超快激光结构化和涂层的协同效应可实现强大且可调的表面润湿性。在这项工作中,使用飞秒激光结构化的不锈钢(SS - 100)网来承载NaAlSiO - HO沸石膜的生长。对原始的SS - 100网、涂覆沸石的SS - 100网、激光结构化的SS - 100网以及涂覆沸石的激光结构化的SS - 100网进行了接触角测量。在涂覆沸石的SS - 100网(接触角72°)和激光结构化的SS - 100网(接触角41°)中观察到亲水性增强。另一方面,涂覆沸石的激光结构化的SS - 100网(接触角14°)在较长时间内表现出卓越的持久亲水性和可重复使用性。此外,对涂覆沸石的激光结构化的SS - 100网进行了油水分离测试,结果表明其在油水分离方面具有增强的效果。