Department of Chemical and Biomolecular Engineering , Korea University , Seoul , 02841 , Republic of Korea.
Membrane Research Center, Advanced Materials Division , Korea Institute of Chemical Technology (KRICT) , Daejeon , 34114 , Republic of Korea.
ACS Appl Mater Interfaces. 2018 Dec 19;10(50):44050-44058. doi: 10.1021/acsami.8b16403. Epub 2018 Dec 5.
Organic solvent nanofiltration (OSN) has made significant advances recently, and it is now possible to fabricate thin film composite (TFC) membranes with a selective layer thickness below 10 nm that gives ultrafast solvent permeance. However, such high permeance is inadvertently limited by the support membrane beneath the selective layer, and thus there is an urgent need to develop a suitable support to maximize TFC performance. In this work, we employed a commercially available polyethylene (PE) battery separator as a porous support to fabricate high performance TFC OSN membranes. To deposit a uniform polyamide selective layer onto the porous support via interfacial polymerization, the PE support was hydrophilized with O plasma and the reaction efficiency was optimized using a surfactant. Owing to the high surface porosity of the PE support and the high permselectivity of the PA layer, the PE-supported TFC membrane outperformed the previously reported OSN membranes and its performance exceeded the current performance upper bound. A solvent activation step dramatically improved the solvent permeance by 5-fold while maintaining nanoseparation properties. In addition to the superior OSN performance, the commercial availability of the PE support and simplified TFC fabrication protocol would make the PE-supported OSN membranes commercially attractive.
有机溶剂纳滤(OSN)最近取得了重大进展,现在已经可以制造出选择性层厚度低于 10nm 的薄膜复合(TFC)膜,从而实现超快溶剂透过率。然而,如此高的透过率无意中受到选择性层下方支撑膜的限制,因此迫切需要开发合适的支撑膜来最大限度地提高 TFC 性能。在这项工作中,我们采用市售的聚乙烯(PE)电池隔板作为多孔支撑体来制备高性能 TFC OSN 膜。为了通过界面聚合将均匀的聚酰胺选择性层沉积到多孔支撑体上,使用 O 等离子体对 PE 支撑体进行亲水化,并使用表面活性剂优化反应效率。由于 PE 支撑体的高表面孔隙率和 PA 层的高分离选择性,PE 支撑的 TFC 膜的性能优于先前报道的 OSN 膜,其性能超过了当前的性能上限。溶剂激活步骤使溶剂透过率提高了 5 倍,同时保持了纳米分离性能。除了卓越的 OSN 性能外,PE 支撑体的商业可用性和简化的 TFC 制造方案将使 PE 支撑的 OSN 膜具有商业吸引力。