膜
材料科学
海水淡化
选择性
Nexus(标准)
水化能
离子键合
纳米技术
离子
聚合物
多孔介质
化学工程
多孔性
有机化学
化学
计算机科学
催化作用
复合材料
生物化学
工程类
嵌入式系统
作者
Ryan M. DuChanois,Cassandra J. Porter,Camille Violet,Rafael Verduzco,Menachem Elimelech
标识
DOI:10.1002/adma.202101312
摘要
Abstract Synthetic polymer membranes are enabling components in key technologies at the water–energy nexus, including desalination and energy conversion, because of their high water/salt selectivity or ionic conductivity. However, many applications at the water–energy nexus require ion selectivity, or separation of specific ionic species from other similar species. Here, the ion selectivity of conventional polymeric membrane materials is assessed and recent progress in enhancing selective transport via tailored free volume elements and ion–membrane interactions is described. In view of the limitations of polymeric membranes, three material classes—porous crystalline materials, 2D materials, and discrete biomimetic channels—are highlighted as possible candidates for ion‐selective membranes owing to their molecular‐level control over physical and chemical properties. Lastly, research directions and critical challenges for developing bioinspired membranes with molecular recognition are provided.
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