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Phase behavior and temperature-responsive molecular filters based on self-assembly of polystyrene-block-poly(n-isopropylacrylamide)-block-polystyrene

机译:基于聚苯乙烯-嵌段-聚(n-异丙基丙烯酰胺)-嵌段-聚苯乙烯自组装的相行为和温度响应分子过滤器

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摘要

This work describes the synthesis of temperature-responsive polystyrene--poly(-isopropylacrylamide)--polystyrene triblock copolymers, i.e., PS--PNIPAM--PS, their self-assembly and phase behavior in bulk, and demonstration of aqueous thermoresponsive membranes. A series of PS--PNIPAM--PS triblock copolymers were synthesized using reversible addition-fragmentation chain transfer (RAFT) polymerization. The hydrophobic PS end blocks were selected to form the minority component, whereas the temperature-responsive PNIPAM midblock accounted for the majority component. The self-assembly and phase behavior in bulk of PS--PNIPAM--PS as well as selected blends with low molecular weight PNIPAM homopolymers were studied using transmission electron microscopy (TEM). Classical lamellar, cylindrical, spherical, and bicontinuous double gyroid morphologies were observed in the dried state. In aqueous solutions, the glassy PS domains act as physical cross-links, and hydrogels were therefore formed. The bulk block copolymer morphology had a strong effect on the degree of swelling in aqueous solutions upon cooling below the coil-globule transition temperature of the PNIPAM midblock. Bulk compositions with spherical PS domains and PNIPAM continuous phase swelled in water up to 58 times by weight, whereas composition having cylindrical PS domains or bicontinous gyroid structure in bulk swelled 20 or 10 times by weight, respectively. Finally, lamellar compositions did not show any swelling. Composite membranes for separation studies were prepared by spin-coating thin films of PS--PNIPAM--PS on top of meso/macroporous polyacrylonitrile (PAN) support membrane. The permeability was measured as a function of temperature using aqueous mixture of poly(ethylene glycol) (PEG) with several well-defined molecular weights. The permeability showed a temperature switchable on/off behavior, where higher permeability is obtained below transition temperature of PNIPAM, and the molecular cutoff limits for the PEG molecules are surprisingly low-between 108 and 660 g/mol. The results encourage to further develop and optimize these materials for responsive nanofiltration applications.
机译:这项工作描述了温度响应性聚苯乙烯-聚(-异丙基丙烯酰胺)-聚苯乙烯三嵌段共聚物的合成,即PS-PNIPAM-PS的合成,本体的自组装和相行为以及水相热响应膜的演示。使用可逆加成-断裂链转移(RAFT)聚合合成了一系列PS-PNIPAM-PS三嵌段共聚物。选择疏水性PS端嵌段以形成少数组分,而温度响应性PNIPAM中嵌段占多数组分。使用透射电子显微镜(TEM)研究了PS-PNIPAM-PS以及低分子量PNIPAM均聚物的选定共混物的自组装和相行为。在干燥状态下观察到经典的层状,圆柱形,球形和双连续双螺旋形形态。在水溶液中,玻璃状PS结构域充当物理交联键,因此形成了水凝胶。本体嵌段共聚物的形态在冷却至低于PNIPAM中嵌段的螺旋-球状转变温度时,对水溶液的溶胀度有很大影响。具有球形PS结构域和PNIPAM连续相的本体组合物在水中溶胀高达58倍重量,而具有圆柱形PS结构域或双连续螺旋结构的本体组合物分别溶胀20或10倍重量。最后,层状组合物没有显示任何溶胀。用于分离研究的复合膜是通过将PS-PNIPAM-PS薄膜旋涂在中/大分子聚丙烯腈(PAN)支撑膜上而制得的。使用具有几个明确定义的分子量的聚(乙二醇)(PEG)的水性混合物,测量渗透率随温度的变化。渗透性显示出温度可切换的开/关行为,其中在PNIPAM的转变温度以下可获得较高的渗透性,并且PEG分子的截留极限出乎意料地低至108至660 g / mol。结果鼓励进一步开发和优化这些材料,用于响应性纳滤应用。

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