A review of nano-confined composite membranes fabricated inside the porous support

Xiangqiong Wang, Naixin Wang, Xiaoting Li, Quan-Fu An
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引用次数: 15

Abstract

Asymmetric composite membranes composed of a porous support layer and compact selective layer have been used in many fields. Nowadays, most studies focus on the material design and structure optimization of the selective layer. However, nano-confined pores in the porous support layer can also be used to construct a composite membrane with unique architecture. The functional polymer and nanoporous particles can be embedded in the pores rather than on the support surface to form a composite membrane, which can solve some significant problems, such as the contradiction between integrity and ultrathin thickness of the selective layer, the interfacial adhesion between selective layer and support layer, and the orientation of the selective layer. The separation performance and the stability of the composite membranes are thus improved. Summarized in this review are the latest studies on the formation of composite membranes using confined space of porous support layer which are defined as a nano-confined composite membrane in this review, with the focus on membrane structure, pore property, and fabrication strategy. The summary and outlook are discussed with a perspective on high-performance composite membranes.

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多孔支架内纳米约束复合膜的研究进展
由多孔支撑层和致密选择层组成的非对称复合膜在许多领域得到了应用。目前,大多数研究都集中在选择层的材料设计和结构优化上。然而,多孔支撑层中的纳米限制孔也可以用来构建具有独特结构的复合膜。功能聚合物和纳米多孔粒子可以嵌入孔隙中而不是在支撑表面形成复合膜,可以解决选择层的完整性与超薄厚度之间的矛盾、选择层与支撑层之间的界面粘附、选择层的取向等重大问题。从而提高了复合膜的分离性能和稳定性。本文综述了利用密闭空间多孔支撑层形成复合膜的最新研究进展,并将其定义为纳米密闭复合膜,重点介绍了膜的结构、孔性质和制备策略。对高性能复合膜的研究进展进行了总结和展望。
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