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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Water makes it hydrophobic: Contraphilic wetting for polyurethanes with soft blocks having semifluorinated and 5,5-dimethylhydantoin side chains
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Water makes it hydrophobic: Contraphilic wetting for polyurethanes with soft blocks having semifluorinated and 5,5-dimethylhydantoin side chains

机译:水使其具有疏水性:具有半嵌段和5,5-二甲基乙内酰脲侧链的软嵌段聚氨酯的反亲润湿

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摘要

A series of polyurethanes with novel copolymer soft blocks display a new surface phenomenon, contraphilic wetting, in which the dry surface is hydrophilic and the wetted surface is hydrophobic. A precursor polymer was prepared with copolymer soft blocks containing semifluorinated (trifluoroethoxy, 3FOx, or pentafluoropropoxy, 5FOx) and bromomethyl functional pendant groups with 2:1, 1:1, and 1:2 semifluorinated/bromomethyl ratios. The hard block consists of isophorone diisocyanate (IPDI) and 1,4-butanediol (BD). 5,5-Dimethylhydantoin was introduced by the substitution of Br via reaction-on-polymer. The composition, structure, and percent of 5,5-dimethylhydantoin substitution for both the precursor and the 5,5-dimethylhydantoin-substituted polyurethanes were analyzed by H-1 NMR. The difference between the advancing contact angle on the wetted surface and that on the dry surface (Delta(C)) is highest (38 degrees) for the polyurethane with the highest ratio of semifluorinated/hydantoin soft block side chains. A model is proposed according to which contraphilic wetting is driven enthalpically by hydrogen bonding. For the dry surface, hydrogen bonding of 5,5-dimethylhydantoin amide carbonyl groups to methylene hydrogens of semifluorinated groups disrupts the normal surface concentration of semifluorinated groups, whereas the geometric arrangement of hydantoin N-H results in availability for hydrogen bonding with water. Upon exposure to water, amide groups switch from hydrogen bonding to -CH2CF2CF3 to stronger hydrogen bonding with water. As a result, semifluorinated groups are "released", and the surface becomes hydrophobic. Drying the coating (50 degrees C) reversibly restores hydrophilic character. Coatings stored at ambient temperature and humidity have Delta(C) values intermediate between dry and wet states.
机译:一系列具有新型共聚物软嵌段的聚氨酯表现出一种新的表面现象,即逆向润湿,其中干燥表面为亲水性,而润湿表面为疏水性。用具有半氟化(三氟乙氧基,3FOx或五氟丙氧基,5FOx)和具有2:1、1:1和1:2半氟化/溴甲基比率的溴甲基官能侧基的共聚物软嵌段制备前体聚合物。硬嵌段由异佛尔酮二异氰酸酯(IPDI)和1,4-丁二醇(BD)组成。通过在聚合物上的反应取代Br,引入5,5-二甲基乙内酰脲。通过H-1 NMR分析了前体和5,5-二甲基乙内酰脲取代的聚氨酯两者的组成,结构和5,5-二甲基乙内酰脲取代的百分比。对于半氟化/乙内酰脲软嵌段侧链比例最高的聚氨酯,在湿润表面和干燥表面上前进的接触角之间的差异(ΔC)最高(38度)。提出了一种模型,该模型通过氢键焓地驱动逆向润湿。对于干燥表面,5,5-二甲基乙内酰脲酰胺羰基与半氟化基团的亚甲基氢键合会破坏半氟化基团的正常表面浓度,而乙内酰脲N-H的几何排列导致可与水进行氢键结合。暴露于水后,酰胺基团从氢键切换为-CH2CF2CF3,从而与水形成更强的氢键。结果,半氟化基团被“释放”,并且表面变成疏水的。干燥涂层(50摄氏度)可逆地恢复亲水特性。在环境温度和湿度下存储的涂层的Delta(C)值介于干态和湿态之间。

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