Wong Kar Chun, Goh Pei Sean, Ismail Ahmad Fauzi, Kang Hooi Siang, Guo Qingjie, Jiang Xiaoxia, Ma Jingjing
Advanced Membrane Technology Research Centre (AMTEC), School of Chemical and Energy Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, Johor Bahru 81310, Malaysia.
Marine Technology Centre, Institute for Vehicle System & Engineering, School of Mechanical Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, Johor Bahru 81310, Malaysia.
Membranes (Basel). 2022 Feb 4;12(2):186. doi: 10.3390/membranes12020186.
Nanocomposite membrane (NCM) is deemed as a practical and green separation solution which has found application in various fields, due to its potential to delivery excellent separation performance economically. NCM is enabled by nanofiller, which comes in a wide range of geometries and chemical features. Despite numerous advantages offered by nanofiller incorporation, fabrication of NCM often met processing issues arising from incompatibility between inorganic nanofiller and polymeric membrane. Contemporary, functionalization of nanofiller which modify the surface properties of inorganic material using chemical agents is a viable approach and vigorously pursued to refine NCM processing and improve the odds of obtaining a defect-free high-performance membrane. This review highlights the recent progress on nanofiller functionalization employed in the fabrication of gas-separative NCMs. Apart from the different approaches used to obtain functionalized nanofiller (FN) with good dispersion in solvent and polymer matrix, this review discusses the implication of functionalization in altering the structure and chemical properties of nanofiller which favor interaction with specific gas species. These changes eventually led to the enhancement in the gas separation efficiency of NCMs. The most frequently used chemical agents are identified for each type of gas. Finally, the future perspective of gas-separative NCMs are highlighted.
纳米复合膜(NCM)被认为是一种实用且环保的分离解决方案,由于其具有以经济的方式实现优异分离性能的潜力,已在各个领域得到应用。NCM由纳米填料制成,纳米填料具有多种几何形状和化学特性。尽管加入纳米填料有诸多优点,但NCM的制备常常遇到无机纳米填料与聚合物膜之间不相容所引发的加工问题。目前,使用化学试剂对纳米填料进行功能化处理以改变无机材料的表面性质,是一种可行的方法,并且人们正在大力探索,以优化NCM的加工过程并提高获得无缺陷高性能膜的几率。本综述重点介绍了用于制备气体分离NCM的纳米填料功能化的最新进展。除了用于获得在溶剂和聚合物基体中具有良好分散性的功能化纳米填料(FN)的不同方法外,本综述还讨论了功能化对改变纳米填料的结构和化学性质的影响,这些改变有利于与特定气体种类发生相互作用。这些变化最终提高了NCM的气体分离效率。针对每种气体类型,确定了最常用的化学试剂。最后,强调了气体分离NCM的未来前景。