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通过引入冠醚捕获阳离子进行离子筛分来对金属有机骨架膜进行充电

Charging Metal-Organic Framework Membranes by Incorporating Crown Ethers to Capture Cations for Ion Sieving.

作者信息

Li Jiang, Shi Yayun, Qi Chenyang, Zhang Bowen, Xing Xiwen, Li Yuliang, Chen Tongdan, Mao Xingnuo, Zuo Zhijun, Zhao Xiaoli, Pan Zhenghui, Li Libo, Yang Xiaowei, Li Cheng

机构信息

Department of Anesthesiology and Perioperative medicine, Shanghai Key Laboratory of Anesthesiology and Brain Functional Modulation, Shanghai Fourth People's Hospital, School of Medicine, Tongji University, Shanghai, 200434, P. R. China.

School of Materials Science and Engineering, School of Water and Environment, Chang'an University, Xian, 710062, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2023 Oct 2;62(40):e202309918. doi: 10.1002/anie.202309918. Epub 2023 Aug 24.

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 selectivity, which benefit from the reinforcement of the electrostatic repulsion between ions and the channel. Meanwhile, theoretical calculations reveal that Mg 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.

摘要

生物膜上的蛋白质通道通过调节电荷残基的分布来有条件地控制离子运输,这使得人工膜上的类似过程成为一个热点和挑战。在此,我们采用具有电荷可调亚纳米通道的金属有机框架(MOF)膜来选择性地控制离子运输。各种价态的离子与嵌入MOF腔内的冠醚结合,冠醚作为带电客体,将通道的电荷状态从负性调节为正性。与带负电荷的通道相比,带正电荷的通道明显提高了Li⁺/Mg²⁺的选择性,这得益于离子与通道之间静电排斥的增强。同时,理论计算表明,Mg²⁺通过带正电荷更多的通道运输时,需要克服比Li⁺更高的进入能垒。这项工作为通过调节绝缘膜的电荷状态实现离子选择性运输提供了一种巧妙的策略,为海水淡化和从盐湖中提取锂等应用铺平了道路。

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