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Solvent-Resistant Nanofiltration Membranes Based on Multilayered Polyelectrolyte Complexes

机译:基于多层聚电解质配合物的耐溶剂性纳滤膜

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Alternating deposition of oppositely charged polyelectrolyte (PEs) can create stable solvent-resistant nanofiltration (SRNF) membranes with very high flux and selectivity. A new combination of PEs (poly(diallyldimethylammonium chloride) and sulfonated poly(ether ether ketone) is reported from which supported membranes consisting of 5,10,15, and 20 bilayers are prepared via the layer-by-layer method. The morphology of the membranes was studied in detail by SEM and AFM, showing rougher membrane surfaces with increasing bilayer number. For the first time, polyelectrolyte complex (PEC) based membranes were also applied in the filtration of organic solvents, where they form an excellent new tool to study the role of charges in solvent nitrations. Due to Donnan exclusion, the multilayered PEC membranes showed very good retentions up to 99% for charged solutes in the pressure-driven filtration of isopropanol solutions. Moreover, they were found to show excellent prospective use in polar aprotic solvents, like dimethyl-formamide and tetrahydrofuran, which have been extremely troublesome so far for most existing SRNF membranes.
机译:带相反电荷的聚电解质(PE)的交替沉积可以创建稳定的耐溶剂纳米过滤(SRNF)膜,并具有很高的通量和选择性。报道了一种新的PE(聚二烯丙基二甲基氯化铵)和磺化聚(醚醚酮)的组合,通过逐层方法制备了由5,10,15和20个双层组成的支撑膜。通过SEM和AFM对膜进行了详细研究,显示出膜表面随着双层数的增加而变粗糙,并且首次将基于聚电解质复合物(PEC)的膜应用于有机溶剂的过滤,从而形成了一种出色的新工具。研究了电荷在溶剂硝化中的作用,由于Donnan的排斥,多层PEC膜在异丙醇溶液的压力驱动过滤中显示出对带电溶质的很好的保留率,高达99%。极性非质子传递溶剂,例如二甲基甲酰胺和四氢呋喃,迄今为止对于大多数现有的SRNF膜而言都非常麻烦。

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