Sung Choonghyun, Heo Yejin
Division of Advanced Materials Engineering, Dong-Eui University, Busan 47340, Korea.
Polymers (Basel). 2021 Jun 28;13(13):2116. doi: 10.3390/polym13132116.
Porous layer-by-layer (LbL) films have been employed for the implementation of superwetting surfaces, but they are limited to the LbL films consisting of only two oppositely charged polyelectrolytes. In this study, LbL films were assembled using a cationic polymer blend of branched poly(ethylene imine) (BPEI) and poly(allylamine hydrochloride) (PAH), and anionic poly(acrylic acid); they were then acid-treated at pH 1.8-2.0 to create a porous structure. The films of 100% BPEI exhibited a relatively smooth surface, whereas those of the 100% PAH exhibited porous surfaces. However, various surface morphologies were obtained when BPEI and PAH were blended. When coated with fluorinated silane, films with 50% and 100% PAH exhibited relatively higher water contact angles (WCAs). In particular, films with 50% PAH exhibited the highest WCA of 140-150° when treated at pH 1.8. These fluorinated films were further infused with lubricant oil to determine their feasibility as slippery surfaces. The water and oil sliding angles were in the range of 10-20° and 5-10°, respectively. Films prepared with the BPEI/PAH blend showed lower water slide angles than those prepared with 100% BPEI or PAH. Acid treatment of LbL films assembled using a polyelectrolyte blend can effectively control surface morphologies and can potentially be applied in superwetting.
多孔层层(LbL)薄膜已被用于制备超润湿性表面,但它们仅限于由仅两种带相反电荷的聚电解质组成的LbL薄膜。在本研究中,使用支化聚(乙烯亚胺)(BPEI)和聚(烯丙胺盐酸盐)(PAH)的阳离子聚合物共混物以及阴离子聚(丙烯酸)组装LbL薄膜;然后在pH 1.8 - 2.0下对其进行酸处理以形成多孔结构。100%BPEI的薄膜表现出相对光滑的表面,而100%PAH的薄膜表现出多孔表面。然而,当BPEI和PAH混合时获得了各种表面形态。当用氟化硅烷涂覆时,含有50%和100%PAH的薄膜表现出相对较高的水接触角(WCA)。特别是,含有50%PAH的薄膜在pH 1.8处理时表现出最高的WCA,为140 - 150°。这些氟化薄膜进一步注入润滑油以确定它们作为光滑表面的可行性。水和油的滑动角分别在10 - 20°和5 - 10°范围内。用BPEI/PAH共混物制备的薄膜的水滑动角比用100%BPEI或PAH制备的薄膜低。使用聚电解质共混物组装的LbL薄膜的酸处理可以有效地控制表面形态,并有可能应用于超润湿性。