Wang Guang, Garvey Christopher J, Zhao Han, Huang Kang, Kong Lingxue
Institute for Frontier Materials, Deakin University, Locked Bag 20000, Geelong 3220, Australia.
Australian Nuclear Science and Technology Organization, Locked Bag 2001, Kirrawee DC 2232, Australia.
Membranes (Basel). 2017 Jul 21;7(3):37. doi: 10.3390/membranes7030037.
Water scarcity has been recognized as one of the major threats to human activity, and, therefore, water purification technologies are increasingly drawing attention worldwide. Nanofiltration (NF) membrane technology has been proven to be an efficient and cost-effective way in terms of the size and continuity of the nanostructure. Using a template based on hexagonal lyotropic liquid crystals (LLCs) and partitioning monomer units within this structure for subsequent photo-polymerisation presents a unique path for the fabrication of NF membranes, potentially producing pores of uniform size, ranging from 1 to 5 nm, and large surface areas. The subsequent orientation of this pore network in a direction normal to a flat polymer film that provides ideal transport properties associated with continuous pores running through the membrane has been achieved by the orientation of hexagonal LLCs through various strategies. This review presents the current progresses on the strategies for structure retention from a hexagonal LLCs template and the up-to-date techniques used for the reorientation of mesochanels for continuity through the whole membrane.
水资源短缺已被公认为是对人类活动的主要威胁之一,因此,水净化技术在全球范围内越来越受到关注。就纳米结构的尺寸和连续性而言,纳滤(NF)膜技术已被证明是一种高效且具有成本效益的方法。使用基于六方溶致液晶(LLC)的模板,并在该结构内分配单体单元以进行后续光聚合,为制备纳滤膜提供了一条独特的途径,有可能产生尺寸均匀的孔,范围从1到5纳米,以及大的表面积。通过各种策略使六方LLC取向,已实现该孔网络在垂直于平坦聚合物膜的方向上的后续取向,该聚合物膜提供了与贯穿膜的连续孔相关的理想传输特性。本综述介绍了从六方LLC模板保留结构的策略以及用于使介孔通道重新取向以实现贯穿整个膜的连续性的最新技术的当前进展。