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通过纳米孔的纳米颗粒转位的多变量分析,以提高电阻脉冲传感的准确性。

Multivariate analysis of nanoparticle translocation through a nanopore to improve the accuracy of resistive pulse sensing.

作者信息

Jodeyri Zohre, Taghipoor Mojtaba

机构信息

Micro Nano Systems Laboratory (MNSL), Department of Mechanical Engineering, Sharif University of Technology, Tehran, Iran.

出版信息

Phys Chem Chem Phys. 2024 Feb 7;26(6):5097-5105. doi: 10.1039/d3cp05565e.

Abstract

The advent of nanopore-based sensors based on resistive pulse sensing gave rise to a remarkable breakthrough in the detection and characterization of nanoscale species. Some strong correlations have been reported between the resistive pulse characteristics and the particle's geometrical and physical properties. These correlations are commonly used to obtain information about the particles in commercial devices and research setups. The correlations, however, do not consider the simultaneous effect of influential factors such as particle shape and off-axis translocation, which complicates the extraction of accurate information from the resistive pulses. In this paper, we numerically studied the impact of the shape and position of particles on pulse characteristics in order to estimate the errors that arise from neglecting the influence of multiple factors on resistive pulses. We considered the sphere, oblate, and prolate particles to investigate the nanoparticle shape effect. Moreover, the trajectory dependency was examined by considering the translocation of nanoparticles away from the nanopore axis. Meanwhile, the shape effect was studied for different trajectories. We observed that the simultaneous effects of influential parameters could lead to significant errors in estimating particle properties if the coupled effects are neglected. Based on the results, we introduce the "pulse waveshape" as a novel characteristic of the resistive pulse that can be utilized as a decoupling parameter in the analysis of resistive pulses.

摘要

基于电阻脉冲传感的纳米孔传感器的出现,在纳米级物质的检测和表征方面带来了显著突破。已有报道称电阻脉冲特征与粒子的几何和物理性质之间存在一些强相关性。这些相关性通常用于在商业设备和研究装置中获取有关粒子的信息。然而,这些相关性没有考虑粒子形状和离轴迁移等影响因素的同时作用,这使得从电阻脉冲中提取准确信息变得复杂。在本文中,我们通过数值研究了粒子形状和位置对脉冲特征的影响,以估计因忽略多种因素对电阻脉冲的影响而产生的误差。我们考虑了球形、扁球形和长球形粒子来研究纳米粒子形状效应。此外,通过考虑纳米粒子偏离纳米孔轴的迁移来研究轨迹依赖性。同时,针对不同轨迹研究了形状效应。我们观察到,如果忽略耦合效应,影响参数的同时作用可能会在估计粒子性质时导致显著误差。基于这些结果,我们引入“脉冲波形”作为电阻脉冲的一种新特性,可在电阻脉冲分析中用作解耦参数。

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