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单通道蚀刻锥形纳米孔的精确表征。

Accurate characterization of single track-etched, conical nanopores.

作者信息

Apel Pavel Yu, Ramirez Patricio, Blonskaya Irina V, Orelovitch Oleg L, Sartowska Bozena A

机构信息

Flerov Laboratory of Nuclear Reactions, Joint Institute for Nuclear Research, Joliot-Curie str. 6, 141980 Dubna, Russia.

出版信息

Phys Chem Chem Phys. 2014 Aug 7;16(29):15214-23. doi: 10.1039/c4cp01686f. Epub 2014 Jun 17.

Abstract

Single track-etched conical nanopores in polymer foils have attracted considerable attention in recent years due to their potential applications in biosensing, nanofluidics, information processing, and other fields. The performance of a nanopore critically depends on the size and shape of its narrowest, nanometer-sized region. In this paper, we reconstructed the profiles of both doubly-conical and conical pores, using an algorithm based on conductometric measurements performed in the course of etching, coupled with SEM data. We showed that pore constriction deviates from the conical shape, and the deviation depends on the energy loss of the particle that produced the track. Funnel-like profiles of tracks of four ions with different atomic numbers were derived from experimental data. The simulations, using a Poisson-Nernst-Planck model, demonstrated that the ion current rectification properties of the funnel-shaped asymmetrical pores significantly differ from those of conical ones if the tip radius of the pore is smaller than 10 nm. Upon subjecting to further etching, the pores gradually approach the "ideal" conical geometry, and the ion transport properties of these two pore configurations become almost indistinguishable.

摘要

近年来,聚合物箔片中的单道蚀刻锥形纳米孔因其在生物传感、纳米流体、信息处理等领域的潜在应用而备受关注。纳米孔的性能关键取决于其最窄的纳米级区域的尺寸和形状。在本文中,我们使用一种基于蚀刻过程中进行的电导测量并结合扫描电子显微镜(SEM)数据的算法,重建了双锥形孔和锥形孔的轮廓。我们发现孔的收缩偏离了锥形形状,并且这种偏差取决于产生径迹的粒子的能量损失。从实验数据中得出了四种不同原子序数离子的径迹的漏斗状轮廓。使用泊松 - 能斯特 - 普朗克模型进行的模拟表明,如果孔的尖端半径小于10纳米,漏斗形不对称孔的离子电流整流特性与锥形孔的显著不同。经过进一步蚀刻后,孔逐渐接近“理想”的锥形几何形状,并且这两种孔结构的离子传输特性变得几乎无法区分。

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