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锥形纳米孔直径对离子电流整流的影响。

Effect of conical nanopore diameter on ion current rectification.

机构信息

Department of Chemistry, Indiana University, Bloomington, Indiana 47405-7102, USA.

出版信息

J Phys Chem B. 2009 Dec 10;113(49):15960-6. doi: 10.1021/jp9076189.

Abstract

Asymmetric nanoscale conduits, such as conical track-etch pores, rectify ion current due to surface charge effects. To date, most data concerning this phenomenon have been obtained for small nanopores with diameters comparable to the electrical double layer thickness. Here, we systematically evaluate rectification for nanopores in poly(ethylene terephthalate) membranes with tip diameters of 10, 35, 85, and 380 nm. Current-voltage behavior is determined for buffer concentrations from 1 mM to 1 M and pHs 3.4 and 6.7. In general, ion current rectification increases with decreasing tip diameter, with decreasing ionic strength, and at higher pH. Surface charge contributes to increased pore conductivities compared to bulk buffer conductivities, though double layer overlap is not necessary for rectification to occur. Interestingly, the 35 nm pore exhibits a maximum rectification ratio for the 0.01 M buffer at pH 6.7, and the 380 nm pores exhibit nearly diodelike current-voltage curves when initially etched and strong rectification after the ion current has stabilized.

摘要

不对称纳米通道,如锥形轨迹刻蚀孔,由于表面电荷效应而使离子电流整流。迄今为止,大多数关于这种现象的数据都是针对直径与双电层厚度相当的小孔径纳米孔获得的。在这里,我们系统地评估了聚对苯二甲酸乙二醇酯膜中直径为 10、35、85 和 380nm 的纳米孔的整流性能。对于缓冲浓度为 1mM 至 1M 和 pH 值为 3.4 和 6.7 的情况,确定了电流-电压行为。一般来说,离子电流整流随着尖端直径的减小、离子强度的降低和 pH 值的升高而增加。与缓冲液的体相电导率相比,表面电荷会导致孔的电导率增加,尽管双电层重叠不是整流发生的必要条件。有趣的是,35nm 孔在 pH 值为 6.7 的 0.01M 缓冲液中表现出最大的整流比,而 380nm 孔在初始刻蚀时呈现出近乎二极管样的电流-电压曲线,并且在离子电流稳定后表现出很强的整流。

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