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The influence of nanopore dimensions on the electrochemical properties of nanopore arrays studied by impedance spectroscopy

机译:纳米孔尺寸对阻抗谱研究纳米孔阵列电化学性质的影响

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摘要

The understanding of the electrochemical properties of nanopores is the key factor for better understanding their performance and applications for nanopore-based sensing devices. In this study, the influence of pore dimensions of nanoporous alumina (NPA) membranes prepared by an anodization process and their electrochemical properties as a sensing platform using impedance spectroscopy was explored. NPA with four different pore diameters (25 nm, 45 nm and 65 nm) and lengths (5 μm to 20 μm) was used and their electrochemical properties were explored using different concentration of electrolyte solution (NaCl) ranging from 1 to 100 μM. Our results show that the impedance and resistance of nanopores are influenced by the concentration and ion species of electrolytes, while the capacitance is independent of them. It was found that nanopore diameters also have a significant influence on impedance due to changes in the thickness of the double layer inside the pores.
机译:了解纳米孔的电化学特性是更好地了解其性能以及在基于纳米孔的传感设备中的应用的关键因素。在这项研究中,探讨了通过阳极氧化工艺制备的纳米多孔氧化铝(NPA)膜孔尺寸的影响及其作为阻抗平台的电化学平台的电化学性能。使用具有四个不同孔径(25 nm,45 nm和65 nm)和长度(5μm至20μm)的NPA,并使用浓度范围为1至100μM的不同电解质溶液(NaCl)探索其电化学性能。我们的结果表明,纳米孔的阻抗和电阻受电解质的浓度和离子种类的影响,而电容与它们无关。发现由于孔内部双层厚度的变化,纳米孔直径也对阻抗具有显着影响。

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