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温度梯度对扫描离子电导显微镜无接触扫描影响的理论研究

Theoretical study on the effect of temperature gradient on contact-free scanning for scanning ion conductance microscopy.

作者信息

Wang Zhiwu, Zhuang Jian, Zhou Lidong, Li Hongjuan, Ning Shaohui, Liao Xiaobo

机构信息

School of Mechanical Engineering, Taiyuan University of Science and Technology, Taiyuan 030024, China.

Key Laboratory of Education Ministry for Modern Design Rotor-Bearing System, Xi'an Jiaotong University, Xi'an 710049, China; School of Mechanical Engineering, Xi'an Jiaotong University, Xi'an 710049, China.

出版信息

Ultramicroscopy. 2024 Dec;267:114054. doi: 10.1016/j.ultramic.2024.114054. Epub 2024 Sep 14.

Abstract

Scanning ion-conductance microscopy (SICM) is a non-contact, high-resolution, and in-situ scanning probe microscope technique, it can be operated in probing the physical and chemical properties of biological samples such as living cells. Recently, using SICM to study the effects of microenvironment changes such as temperature changes on response of the biological samples has attracted significant attention. However, in this temperature gradient condition, one of the crucial but still unclear issues is the scanning feedback types and safe threshold. In this paper, a theoretical study of effect of the temperature gradient in electrolyte or sample surface on the SICM safe ion-current threshold is conducted using three-dimensional Poisson-Nernst-Planck, Navier-Stokes and energy equations. Two temperature gradient types, sample surface and two types of pipettes with different ratio of inner and outer radii are included, respectively. The results demonstrate that the local temperature of the electrolyte and then sample surface significantly affect the ion flow, shape of the approach curves and thus safe threshold in SICM pipette probe for contact-free scanning. There is a current-increased and decreased phases for approaching the surface with higher temperature and two current-decreased phases for surface with lower temperature. Based on this shape feature of approach curves, the change rate of current is analysis to illustrate the possibility for contact-free scanning of slope object. The results indicate that with the decrease of the normalized tip-surface distance, the coupling effect of large slope angle and local high temperature makes the increase in change rate of ion current not significant and then it challenging to realize contact-free scanning especially for higher surface temperature.

摘要

扫描离子电导显微镜(SICM)是一种非接触式、高分辨率的原位扫描探针显微镜技术,可用于探测生物样品(如活细胞)的物理和化学性质。近年来,利用SICM研究温度变化等微环境变化对生物样品响应的影响受到了广泛关注。然而,在这种温度梯度条件下,一个关键但仍不清楚的问题是扫描反馈类型和安全阈值。本文利用三维泊松-能斯特-普朗克方程、纳维-斯托克斯方程和能量方程,对电解质或样品表面温度梯度对SICM安全离子电流阈值的影响进行了理论研究。分别考虑了两种温度梯度类型,即样品表面温度梯度和两种内外半径比不同的移液器温度梯度。结果表明,电解质的局部温度进而样品表面温度显著影响离子流、接近曲线的形状,从而影响SICM移液器探针非接触扫描的安全阈值。对于温度较高的表面,接近过程存在电流增加和减小阶段;对于温度较低的表面,存在两个电流减小阶段。基于接近曲线的这种形状特征,分析电流变化率以说明对倾斜物体进行非接触扫描的可能性。结果表明,随着归一化针尖-表面距离的减小,大倾斜角和局部高温的耦合效应使得离子电流变化率的增加不显著,从而难以实现非接触扫描,尤其是对于较高的表面温度。

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