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用电化学阻抗谱探测带电二维层压膜中的纳米限域离子传输

Probing Nanoconfined Ion Transport in Electrified 2D Laminate Membranes with Electrochemical Impedance Spectroscopy.

作者信息

Wang Xiao, Liang Qinghua, Jiang Wen-Jie, Wang Peiyao, Liao Jinsha, Xiong Zhiyuan, Li Dan

机构信息

Department of Chemical Engineering, The University of Melbourne, Parkville, Victoria, 3010, Australia.

出版信息

Small Methods. 2022 Nov;6(11):e2200806. doi: 10.1002/smtd.202200806. Epub 2022 Sep 23.

Abstract

The recent emergence of electrically conductive nanoporous membranes based on graphene and other 2D materials opens up new opportunities to revisit some longstanding nanoconfined ion transport problems under electrification. This work probes the ionic resistance in electrified multilayered graphene membranes with electrochemical impedance spectroscopy. This study demonstrates that the combination of additive-free feature and tunable slit pore sizes in the sub-10 nm range in graphene-based membranes has made it possible to deconvolute the different ionic processes from the impedance obtained and examine the exclusive influence of pore size on the ionic resistance in a quantitative manner. The trends revealed for the ionic resistance at the pore entrance and inside the pores under severe nanoconfinement (<2 nm) are found to be generally consistent with the microscale theoretical simulations previously reported. It also allows a quantitative analysis of the relative effects of the external polarization potential and ion identity under nanoconfinement. The results suggest that the classic electrochemical impedance spectroscopy technique, when applied to appropriate nanoporous electrode materials, can provide rich information about nanoconfined ion transport phenomena under electrification for fundamental understanding and application development.

摘要

基于石墨烯和其他二维材料的导电纳米多孔膜的最新出现,为重新审视一些长期存在的带电状态下的纳米受限离子传输问题带来了新机遇。这项工作利用电化学阻抗谱探测带电多层石墨烯膜中的离子电阻。该研究表明,基于石墨烯的膜具有无添加剂特性以及10纳米以下范围内可调节的狭缝孔径,这使得从获得的阻抗中解卷积不同的离子过程,并以定量方式研究孔径对离子电阻的唯一影响成为可能。在严重纳米受限(<2纳米)条件下,孔入口处和孔内离子电阻的变化趋势与先前报道的微观理论模拟结果总体一致。它还允许对纳米受限条件下外部极化电位和离子特性的相对影响进行定量分析。结果表明,经典的电化学阻抗谱技术应用于合适的纳米多孔电极材料时,可为带电状态下的纳米受限离子传输现象提供丰富信息,以促进基础理解和应用开发。

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