Ramirez Patricio, Cervera Javier, Nasir Saima, Ali Mubarak, Ensinger Wolfgang, Mafe Salvador
Departament de Física Aplicada, Universitat Politècnica de València, E-46022 València, Spain.
Departament de Física de la Terra i Termodinàmica, Universitat de València, E-46100 Burjassot, Spain.
J Colloid Interface Sci. 2024 Feb;655:876-885. doi: 10.1016/j.jcis.2023.11.060. Epub 2023 Nov 13.
Electrochemical impedance spectroscopy (EIS) constitutes a useful tool in membrane science and technology because it provides valuable structural and functional information. The different arcs observed in the impedance spectra permit to decouple and understand distinct physico-chemical phenomena occurring under operating conditions. By using EIS techniques, we have characterized here multipore asymmetric membranes with conical pores that exhibit a broad range of ionic conduction properties, including current rectification. These properties can be modulated by tuning the electrical interaction between the charges functionalized on the pore surface and the nanoconfined ionic solution. In particular, the membrane electrical response is studied as a function of the amplitude and frequency of the external voltage signal, the electrolyte type and concentration, and the solution pH. Remarkably, significant chemical inductance effects are observed. The scalability and biocompatibility of these pores suggest good potential for use in hybrid biodevices and interfaces.
电化学阻抗谱(EIS)是膜科学与技术中的一种有用工具,因为它能提供有价值的结构和功能信息。在阻抗谱中观察到的不同弧段有助于分离并理解运行条件下发生的不同物理化学现象。通过使用EIS技术,我们在此对具有锥形孔的多孔隙不对称膜进行了表征,这些膜展现出广泛的离子传导特性,包括电流整流。这些特性可通过调节孔表面功能化电荷与纳米受限离子溶液之间的电相互作用来调控。特别地,研究了膜的电响应与外部电压信号的幅度和频率、电解质类型和浓度以及溶液pH值的函数关系。值得注意的是,观察到了显著的化学电感效应。这些孔的可扩展性和生物相容性表明其在混合生物器件和界面中的应用潜力巨大。