膜
离子
化学
化学物理
离子运输机
海水淡化
选择性
锂(药物)
金属
化学工程
纳米技术
材料科学
有机化学
内分泌学
工程类
催化作用
医学
生物化学
作者
Jiang Li,Yayun Shi,Chenyang Qi,Bowen Zhang,Xiwen Xing,Yuliang Li,Tongdan Chen,Xueying Mao,Zhijun Zuo,Xiaoli Zhao,Zhenghui Pan,Libo Li,Xiaowei Yang,Cheng Li
标识
DOI:10.1002/ange.202309918
摘要
Abstract Protein channels on the biofilm conditionally manipulate ion transport via regulating the distribution of charge residues, making analogous processes on artificial membranes a hot spot and challenge. Here, we employ metal–organic frameworks (MOFs) membrane with charge‐adjustable subnano‐channel to selectively govern ion transport. Various valent ions are binded with crown ethers embedded in the MOF cavity, which act as charged guest to regulate the channels’ charge state from the negativity to positivity. Compared with the negatively charged channel, the positive counterpart obviously enhances Li + /Mg 2+ selectivity, which benefit from the reinforcement of the electrostatic repulsion between ions and the channel. Meanwhile, theoretical calculations reveal that Mg 2+ transport through the more positively charged channel needed to overcome higher entrance energy barrier than that of Li + . This work provides a subtle strategy for ion‐selective transport upon regulating the charge state of insulating membrane, which paves the way for the application like seawater desalination and lithium extraction from salt lakes.
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