Local Temperature Profile Measurement in Microchannels Using Temperature Sensitive Leuco-Dye Microbeads

M. A. Cartas-Ayala, R. Karnik
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Abstract

Microfluidics has shown the ability to reproduce many of the techniques used in chemistry and biology, achieving faster and inexpensive results with smaller samples. As part of this effort towards miniaturization, the heating and cooling of samples has become an important step in many devices, especially for nucleic acid analysis. Measuring temperature profiles inside microchannels is required to verify the performance of such devices. Here we introduce a new technique to measure thermal profiles in microchannels: leuco-dye temperature sensitive microbeads, which permits fast, simple and inexpensive measurement of thermal profiles based on color, which enable its use to quickly assess temperature profiles to verify device performance, or as an educational tool for visualizing microscale heat transfer. Using the technique, we present visualization of thermal profiles and measurement of color transition lengths in microfluidic devices and compare the results with theoretical and numerical models with good a...
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使用温度敏感的白色染料微珠测量微通道中的局部温度分布
微流体已经显示出再现化学和生物学中使用的许多技术的能力,用更小的样本获得更快、更便宜的结果。作为小型化努力的一部分,样品的加热和冷却已成为许多设备的重要步骤,特别是对于核酸分析。需要测量微通道内的温度分布来验证此类设备的性能。在这里,我们介绍了一种测量微通道中热分布的新技术:白色染料温度敏感微珠,它允许基于颜色的热分布快速,简单和廉价的测量,这使得它能够快速评估温度分布以验证设备性能,或作为可视化微尺度传热的教育工具。利用该技术,我们实现了微流控器件热分布的可视化和颜色过渡长度的测量,并将结果与理论和数值模型进行了比较。
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