首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Joule heating monitoring in a microfluidic channel by observing the Brownian motion of an optically trapped microsphere
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Joule heating monitoring in a microfluidic channel by observing the Brownian motion of an optically trapped microsphere

机译:通过观察光学捕获的微球的布朗运动来监测微流体通道中的焦耳热

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摘要

Electric fields offer a variety of functionalities to Lab-on-a-Chip devices. The use of these fields often results in significant Joule heating, affecting the overall performance of the system. Precise knowledge of the temperature profile inside a microfluidic device is necessary to evaluate the implications of heat dissipation. This article demonstrates how an optically trapped microsphere can be used as a temperature probe to monitor Joule heating in these devices. The Brownian motion of the bead at room temperature is compared with the motion when power is dissipated in the system. This gives an estimate of the temperature increase at a specific location in a microfluidic channel. We demonstrate this method with solutions of different ionic strengths, and establish a precision of 0.9 K and an accuracy of 15%. Furthermore, it is demonstrated that transient heating processes can be monitored with this technique, albeit with a limited time resolution.
机译:电场为片上实验室设备提供了多种功能。这些场的使用通常会导致焦耳发热,从而影响系统的整体性能。必须精确了解微流体设备内部的温度曲线,才能评估散热的影响。本文演示了如何将光学捕获的微球用作温度探针,以监控这些设备中的焦耳热。将室温下磁珠的布朗运动与系统耗散功率时的运动进行比较。这给出了微流体通道中特定位置的温度升高的估计值。我们用不同离子强度的溶液演示了该方法,并建立了0.9 K的精度和15%的精度。此外,已经证明,尽管时间分辨率有限,但是可以用该技术监测瞬态加热过程。

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