Zhao Xiaoxiao, Khandoker Md Arifur Rahman, Golovin Kevin
Okanagan Polymer Engineering Research & Applications Laboratory, School of Engineering, University of British Columbia, Kelowna, British Columbia V1V 1V7, Canada.
ACS Appl Mater Interfaces. 2020 Apr 1;12(13):15748-15756. doi: 10.1021/acsami.0c01678. Epub 2020 Mar 17.
Existing methods for fabricating oil-repellent paper rely on highly fluorinated and therefore toxic chemicals. Non-fluorinated omniphobic paper with low contact angle hysteresis (CAH) has not been demonstrated. We report a facile method to prepare omniphobic paper through the vapor-phase deposition of chlorosilane molecules to create "liquid-like" polymer brushes on commercially available release liners. Compared to polymer brushes grafted from solution, this solvent-free method avoided physical deformation of the paper, such as curling or wrinkling. The obtained paper displayed low CAH (<6°) and roll-off angles for liquids exhibiting a broad range of surface tension, from 72.8 to 22.4 mN m. A hexadecane droplet (15 μL, 27.5 mN m) slid off the paper at a tilt angle less than 4°. The effects of surface roughness, composition, and the presence of particle additives on the wetting properties were investigated. The utility of the omniphobic paper was demonstrated in microfluidic, oil funnel, microtiter plate, and food packaging container applications.
现有的制备拒油纸的方法依赖于高氟化且因此有毒的化学物质。具有低接触角滞后(CAH)的非氟化全疏纸尚未得到证实。我们报道了一种简便的方法,通过氯硅烷分子的气相沉积在市售的离型纸上制备全疏纸,以形成“类液体”聚合物刷。与从溶液中接枝的聚合物刷相比,这种无溶剂方法避免了纸张的物理变形,如卷曲或起皱。所制备的纸张对于表面张力范围从72.8到22.4 mN/m的液体显示出低CAH(<6°)和滚落角。一个十六烷液滴(15 μL,27.5 mN/m)以小于4°的倾斜角从纸上滑落。研究了表面粗糙度、组成和颗粒添加剂的存在对润湿性的影响。全疏纸在微流体、油漏斗、微量滴定板和食品包装容器应用中展示了其效用。