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Electrothermal Fluid Manipulation of High-Conductivity Samples for Laboratory Automation Applications

机译:用于实验室自动化应用的高电导率样品的电热流体处理

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摘要

Electrothermal flow is a promising technique in microfluidic manipulation toward laboratory automation applications, such as clinical diagnostics and high-throughput drug screening. Despite the potential of electrothermal flow in biomedical applications, relatively little is known about electrothermal manipulation of highly conductive samples, such as physiological fluids and buffer solutions. In this study, the characteristics and challenges of electrothermal manipulation of fluid samples with different conductivities were investigated systematically. Electrothermal flow was shown to create fluid motion for samples with a wide range of conductivity when the driving frequency was greater than 100 kHz. For samples with low conductivities (below I S/m), the characteristics of the electrothermal fluid motions were in quantitative agreement with the theory. For samples with high conductivities (greater than l S/m), the fluid motion appeared to deviate from the model as a result of potential electrochemical reactions and other electrothermal effects. These effects should be taken into consideration for electrothermal manipulation of biological samples with high conductivities. This study will provide insights in designing microfluidic devices for electrokinetic manipulation of biological samples toward laboratory automation applications in the future.
机译:电热流是用于实验室自动化应用的微流控技术中的一种有前途的技术,例如临床诊断和高通量药物筛选。尽管电热流在生物医学应用中具有潜力,但对高导热性样品(例如生理液和缓冲液)的电热处理的了解相对较少。在这项研究中,系统地研究了电导率不同的流体样品的电热处理的特点和挑战。研究表明,当驱动频率大于100 kHz时,电热流会为具有广泛电导率的样品产生流体运动。对于低电导率样品(低于I S / m),电热流体运动的特征与理论定量吻合。对于具有高电导率(大于l S / m)的样品,由于潜在的电化学反应和其他电热效应,流体运动似乎偏离了模型。对于电导率高的生物样品,应考虑这些影响。这项研究将为设计将来用于实验室自动化应用的生物样品的电动控制微流体装置提供见识。

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