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一种用于研究过冷水滴中冰核形成的微流控装置。

A microfluidic apparatus for the study of ice nucleation in supercooled water drops.

作者信息

Stan Claudiu A, Schneider Grégory F, Shevkoplyas Sergey S, Hashimoto Michinao, Ibanescu Mihai, Wiley Benjamin J, Whitesides George M

机构信息

Department of Chemistry and Chemical Biology, Harvard University, Cambridge, MA 01238, USA.

出版信息

Lab Chip. 2009 Aug 21;9(16):2293-305. doi: 10.1039/b906198c. Epub 2009 May 22.

Abstract

This paper describes a microfluidic instrument that produces drops of supercooled water suspended in a moving stream of liquid fluorocarbon, and measures the temperatures at which ice nucleates in the drops. A microfluidic chip containing a monodisperse drop generator and a straight channel with 38 embedded resistance thermometers was placed in contact with a seven-zone temperature-control plate and imaged under a microscope with a high-speed camera. This instrument can record the freezing temperatures of tens of thousands of drops within minutes, with an accuracy of 0.4 degrees C. The ice-nucleation temperatures in approximately 80-microm drops were reported for the freezing of 37 061 drops of pure water, and of 8898 drops of water seeded with silver iodide. Nucleation of ice in pure water was homogenous and occurred at temperatures between -36 and -37.8 degrees C, while water containing silver iodide froze between -10 and -19 degrees C. The instrument recorded the largest sets of individual freezing temperatures (37 061), had the fastest data acquisition rate (75 measurements/s), and the best optical (3 microm) and temporal (70 micros) resolutions among instruments designed to study nucleation of ice. The dendritic growth of ice in 150-microm drops of supercooled water at -35 degrees C was observed and imaged at a rate of 16 000 frames/s.

摘要

本文描述了一种微流控仪器,它能产生悬浮在流动的液态氟碳流中的过冷水滴,并测量水滴中冰核形成时的温度。将一个包含单分散液滴发生器和一条带有38个嵌入式电阻温度计的直通道的微流控芯片与一个七区温度控制板接触,并在显微镜下用高速相机成像。该仪器能在几分钟内记录数以万计水滴的冻结温度,精度为0.4摄氏度。报告了约80微米水滴中37061滴纯水以及8898滴碘化银种子水的冰核形成温度。纯水中冰的成核是均匀的,发生在-36至-37.8摄氏度之间的温度,而含碘化银的水在-10至-19摄氏度之间冻结。该仪器记录了最大数量的单个冻结温度(37061个),具有最快的数据采集速率(75次测量/秒),并且在用于研究冰核形成的仪器中具有最佳的光学分辨率(3微米)和时间分辨率(70微秒)。在-35摄氏度下,以16000帧/秒的速率观察并拍摄了150微米过冷水滴中冰的树枝状生长。

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