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Recent developments in polymeric nano-based separation membranes. | LitMetric

Recent developments in polymeric nano-based separation membranes.

Fundam Res

Center for Membrane and Water Science & Technology, Zhejiang University of Technology, Hangzhou 310014, China.

Published: March 2022

AI Article Synopsis

  • Polymeric nanomaterials are gaining attention for creating high-performance separation membranes due to their adjustable properties and compatibility with existing polymers, which can help resolve issues like permeability-selectivity trade-offs and fouling.
  • Recent research focuses on enhancing the design and surface qualities of these membranes through various fabrication techniques, such as phase inversion and self-assembly, to elevate their effectiveness.
  • The review covers membrane fabrication methods, strategies for modifying surface and microstructural properties, and details about their performance in separating liquid and gas molecules, alongside highlighting ongoing challenges and opportunities in advancing these materials.

Article Abstract

Polymeric nanomaterials, which have tuneable chemical structures, versatile functionalities, and good compatibility with polymeric matrices, have attracted increasing interest from researchers for the construction of polymeric nano-based separation membranes. With their distinctive nanofeatures, polymeric nano-based membranes show great promise in overcoming bottlenecks in polymer membranes, namely, the trade-off between permeability and selectivity, low stability, and fouling issues. Accordingly, recent studies have focused on tuning the structures and tailoring the surface properties of polymeric nano-based membranes via exploitation of membrane fabrication techniques and surface modification strategies, with the objective of pushing the performance of polymeric nano-based membranes to a new level. In this review, first, the approaches for fabricating polymeric nano-based mixed matrix membranes and homogeneous membranes are summarized, such as surface coating, phase inversion, interfacial polymerization, and self-assembly methods. Next, the manipulation strategies of membrane surface properties, namely, the hydrophilicity/hydrophobicity, charge characteristics, and surface roughness, and interior microstructural properties, namely, the pore size and content, channel construction and regulation, are comprehensively discussed. Subsequently, the separation performances of liquid ions/molecules and gas molecules through polymeric nano-based membranes are systematically reported. Finally, we conclude this review with an overview of various unsolved scientific and technical challenges that are associated with new opportunities in the development of advanced polymeric nano-based membranes.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11197816PMC
http://dx.doi.org/10.1016/j.fmre.2021.11.029DOI Listing

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