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微流控设备中用于集成温度控制的化学和物理过程。

Chemical and physical processes for integrated temperature control in microfluidic devices.

作者信息

Guijt Rosanne M, Dodge Arash, van Dedem Gijs W K, de Rooij Nico F, Verpoorte Elisabeth

机构信息

SAMLAB, Institute of Microtechnology, University of Neuchatel, Switzerland.

出版信息

Lab Chip. 2003 Feb;3(1):1-4. doi: 10.1039/b210629a. Epub 2002 Dec 16.

Abstract

Microfluidic devices are a promising new tool for studying and optimizing (bio)chemical reactions and analyses. Many (bio)chemical reactions require accurate temperature control, such as for example thermocycling for PCR. Here, a new integrated temperature control system for microfluidic devices is presented, using chemical and physical processes to locally regulate temperature. In demonstration experiments, the evaporation of acetone was used as an endothermic process to cool a microchannel. Additionally, heating of a microchannel was achieved by dissolution of concentrated sulfuric acid in water as an exothermic process. Localization of the contact area of two flows in a microfluidic channel allows control of the position and the magnitude of the thermal effect.

摘要

微流控设备是一种用于研究和优化(生物)化学反应及分析的很有前景的新工具。许多(生物)化学反应需要精确的温度控制,例如用于聚合酶链式反应(PCR)的热循环。在此,提出了一种用于微流控设备的新型集成温度控制系统,该系统利用化学和物理过程来局部调节温度。在演示实验中,丙酮的蒸发被用作吸热过程来冷却微通道。此外,通过将浓硫酸溶解于水中作为放热过程来实现微通道的加热。微流控通道中两股流体接触区域的局部化使得能够控制热效应的位置和大小。

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