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A High-Sensitivity Microfluidic Chip Calorimeter for Biochemical Reaction Monitoring Applications

机译:用于生化反应监测应用的高灵敏度微流控芯片热量计

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Miniaturized calorimeter can monitor biochemical procedures by just detecting heat change during the reaction with minimum reagent consumption and short inspection time. This paper presents a high-sensitivity chip calorimeter fabricated by micromachining process. The device is composed of a polyimide-based flexible Bi-Sb thermopile thermal sensor and polydimethylsiloxane (PDMS) microfluidic chambers. With the novel design of the thermopile, the device has a high heat power sensitivity of 5.3V/W and a thermal response time about 0.93s which is good enough for real time reaction heat monitoring. With three identical 1μL PDMS chambers, the calorimeter can detect the heat of biochemical process with very little sample consumption. The chip calorimeter has prospects to realize high-throughput biochemical process monitoring and analysis in biological, chemical, pharmaceutical and medical applications.
机译:小型量热仪可以通过仅检测反应过程中的热变化,从而以最少的试剂消耗和较短的检查时间来监控生化程序。本文提出了一种通过微加工工艺制备的高灵敏度芯片量热仪。该设备由基于聚酰亚胺的柔性Bi-Sb热电堆热传感器和聚二甲基硅氧烷(PDMS)微流体腔室组成。通过热电堆的新颖设计,该设备具有5.3V / W的高热功率灵敏度和约0.93s的热响应时间,足以用于实时反应热监测。借助三个相同的1μLPDMS腔室,热量计可以以极少的样品消耗量检测生化过程的热量。芯片量热仪具有在生物,化学,制药和医疗应用中实现高通量生化过程监测和分析的前景。

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