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由单层粘土纳米片组装的膜具有超高且稳定的离子选择性。

Superhigh and Robust Ion Selectivity in Membranes Assembled with Monolayer Clay Nanosheets.

作者信息

Yu Xin, Qian Xitang, Wei Qinwei, Zhang Qing, Cheng Hui-Ming, Ren Wencai

机构信息

Shenyang National Laboratory for Materials Science, Institute of Metal Research, Chinese Academy of Sciences, Shenyang, 110016, P. R. China.

School of Materials Science and Engineering, University of Science and Technology of China, Shenyang, 110016, P. R. China.

出版信息

Small. 2023 Aug;19(35):e2300338. doi: 10.1002/smll.202300338. Epub 2023 Apr 26.

Abstract

It is crucial to control the ion transport in membranes for various technological applications such as energy storage and conversion. The emerging functional two-dimensional (2D) nanosheets such as graphene oxide and MXenes show great potential for constructing ordered nanochannels, but the assembled membranes suffer from low ion selectivity and stability. Here a class of robust charge-selective membranes with superhigh cation/anion selectivity, which are assembled with monolayer nanosheets of cationic/anionic clays that inherently have permanent and uniform charges on each layer is reported. The transport number of cations/anions of cationic vermiculite nanosheet membranes (VNMs)/anionic Co-Al layered double hydroxide (CoAl-LDH) nanosheet membranes is over 0.90 in different NaCl concentration gradients, outperforming all the reported ion-selective membranes. Importantly, this excellent ion selectivity can persist at high-concentration salt solutions, under acidic and alkaline conditions, and for a wide range of ions of different sizes and charges. By coupling a pair of cation-selective vermiculite membrane and anion-selective CoAl-LDH membrane, a reverse electrodialysis device which shows an output power density of 0.7 W m and energy conversion efficiency of 45.5% is constructed. This work provides a new strategy to rationally design high-performance ion-selective membranes by using 2D nanosheets with inherent surface charges for controllable ion-transport applications.

摘要

对于诸如能量存储和转换等各种技术应用而言,控制膜中的离子传输至关重要。新兴的功能性二维(2D)纳米片,如氧化石墨烯和MXenes,在构建有序纳米通道方面显示出巨大潜力,但组装的膜存在离子选择性和稳定性低的问题。本文报道了一类具有超高阳离子/阴离子选择性的坚固电荷选择性膜,它们是由阳离子/阴离子粘土的单层纳米片组装而成,这些粘土在每层上固有地具有永久且均匀的电荷。在不同的NaCl浓度梯度下,阳离子蛭石纳米片膜(VNMs)/阴离子钴铝层状双氢氧化物(CoAl-LDH)纳米片膜的阳离子/阴离子迁移数超过0.90,优于所有已报道的离子选择性膜。重要的是,这种优异的离子选择性在高浓度盐溶液、酸性和碱性条件下以及对于各种不同大小和电荷的离子都能保持。通过耦合一对阳离子选择性蛭石膜和阴离子选择性CoAl-LDH膜,构建了一种反向电渗析装置,其输出功率密度为0.7 W/m²,能量转换效率为45.5%。这项工作提供了一种新策略,通过使用具有固有表面电荷的二维纳米片来合理设计高性能离子选择性膜,用于可控离子传输应用。

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