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Precise nanofiltration in a fouling-resistant self-assembled membrane with water-continuous transport pathways

机译:具有水连续传输路径的抗污自组装膜中的精确纳滤

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Self-assembled materials are attractive for next-generation membranes. However, the need to align self-assembled nanostructures (e.g. cylinders, lamellae) and the narrow stability windows for ordered bicontinuous systems present serious challenges. We propose and demonstrate a novel approach that circumvents these challenges by exploiting size-selective transport in the water-continuous medium of a nanostructured polymer templated from a self-assembled lyotropic Hsub1/sub mesophase. Optimization of the mesophase composition enables high-fidelity retention of the Hsub1/sub structure on photoinduced cross-linking. The resulting material is a mechanically robust nanostructured polymer possessing internally and externally cross-linked nanofibrils surrounded by a continuous aqueous medium. Fabricated membranes show size selectivity at the 1- to 2-nm length scale and water permeabilities of ~10 liters msup?2/sup hoursup?1/sup barsup?1/sup μm. Moreover, the membranes display excellent antimicrobial properties due to the quaternary ammonium groups on the nanofibril surfaces. These results represent a breakthrough for the potential use of polymerized lyotropic mesophase membranes in practical water purification applications.
机译:自组装材料对下一代膜很有吸引力。然而,需要使自组装的纳米结构(例如圆柱体,薄片)对准,并且对于有序的双连续系统而言,狭窄的稳定性窗口是严峻的挑战。我们提出并证明了一种新方法,该方法通过利用自连续溶致H 1 中间相模板化的纳米结构聚合物在水连续介质中的尺寸选择性转运来克服这些挑战。中间相组成的优化可以使H 1 结构在光诱导交联中保持高保真度。所得材料是机械坚固的纳米结构聚合物,其具有被连续水性介质包围的内部和外部交联的纳米原纤维。制成的膜在1到2 nm长度尺度上显示尺寸选择性,并且水渗透率为〜10升m ?2 小时?1 bar ?1 μm。而且,由于纳米原纤维表面上的季铵基团,该膜显示出优异的抗菌性能。这些结果代表了在实际的水净化应用中潜在使用聚合溶致中间相膜的突破。

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