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具有电压可调离子选择性的多功能石墨烯异质纳米通道

Multifunctional graphene heterogeneous nanochannel with voltage-tunable ion selectivity.

作者信息

Su Shihao, Zhang Yifan, Peng Shengyuan, Guo Linxin, Liu Yong, Fu Engang, Yao Huijun, Du Jinlong, Du Guanghua, Xue Jianming

机构信息

State Key Laboratory of Nuclear Physics and Technology, School of Physics, Peking University, Beijing, 100871, PR China.

CAPT, HEDPS and IFSA, College of Engineering, Peking University, Beijing, 100871, PR China.

出版信息

Nat Commun. 2022 Aug 19;13(1):4894. doi: 10.1038/s41467-022-32590-9.

Abstract

Ion-selective nanoporous two-dimensional (2D) materials have shown extraordinary potential in energy conversion, ion separation, and nanofluidic devices; however, different applications require diverse nanochannel devices with different ion selectivity, which is limited by sample preparation and experimental techniques. Herein, we develop a heterogeneous graphene-based polyethylene terephthalate nanochannel (GPETNC) with controllable ion sieving to overcome those difficulties. Simply by adjusting the applied voltage, ion selectivity among K, Na, Li, Ca, and Mg of the GPETNC can be immediately tuned. At negative voltages, the GPETNC serves as a mono/divalent ion selective device by impeding most divalent cations to transport through; at positive voltages, it mimics a biological K nanochannel, which conducts K much more rapidly than the other ions with K/ions selectivity up to about 4.6. Besides, the GPETNC also exhibits the promise as a cation-responsive nanofluidic diode with the ability to rectify ion currents. Theoretical calculations indicate that the voltage-dependent ion enrichment/depletion inside the GPETNC affects the effective surface charge density of the utilized graphene subnanopores and thus leads to the electrically controllable ion sieving. This work provides ways to develop heterogeneous nanochannels with tunable ion selectivity toward broad applications.

摘要

离子选择性纳米多孔二维(2D)材料在能量转换、离子分离和纳米流体装置中展现出了非凡的潜力;然而,不同的应用需要具有不同离子选择性的多样纳米通道装置,这受到样品制备和实验技术的限制。在此,我们开发了一种具有可控离子筛分功能的异质石墨烯基聚对苯二甲酸乙二醇酯纳米通道(GPETNC)来克服这些困难。只需调节施加的电压,GPETNC对K、Na、Li、Ca和Mg的离子选择性就能立即得到调整。在负电压下,GPETNC通过阻碍大多数二价阳离子传输而作为一价/二价离子选择性装置;在正电压下,它模拟生物K纳米通道,传导K的速度比其他离子快得多,K/离子选择性高达约4.6。此外,GPETNC还展现出作为阳离子响应性纳米流体二极管整流离子电流的潜力。理论计算表明,GPETNC内部电压依赖性离子富集/耗尽影响了所利用的石墨烯亚纳米孔的有效表面电荷密度,从而导致电可控离子筛分。这项工作为开发具有可调离子选择性的异质纳米通道以实现广泛应用提供了方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ad7/9391377/dbc047afde6d/41467_2022_32590_Fig1_HTML.jpg

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