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微射流和涂覆轮:探索气液界面碰撞和反应的多功能工具。

Microjets and coated wheels: versatile tools for exploring collisions and reactions at gas-liquid interfaces.

机构信息

Department of Chemistry, University of Wisconsin-Madison, 1101 University Avenue, Madison, Wisconsin 53706-1322, USA.

出版信息

Chem Soc Rev. 2016 Jul 7;45(13):3609-20. doi: 10.1039/c6cs00079g. Epub 2016 Apr 29.

Abstract

This tutorial review describes experimental aspects of two techniques for investigating collisions and reactions at the surfaces of liquids in vacuum. These gas-liquid scattering experiments provide insights into the dynamics of interfacial processes while minimizing interference from vapor-phase collisions. We begin with a historical survey and then compare attributes of the microjet and coated-wheel techniques, developed by Manfred Faubel and John Fenn, respectively, for studies of high- and low-vapor pressure liquids in vacuum. Our objective is to highlight the strengths and shortcomings of each technique and summarize lessons we have learned in using them for scattering and evaporation experiments. We conclude by describing recent microjet studies of energy transfer between O2 and liquid hydrocarbons, HCl dissociation in salty water, and super-Maxwellian helium evaporation.

摘要

本教程综述介绍了两种用于研究真空条件下液体表面碰撞和反应的实验技术的实验方面。这些气液散射实验提供了对界面过程动力学的深入了解,同时最大限度地减少了气相碰撞的干扰。我们首先进行历史调查,然后比较由 Manfred Faubel 和 John Fenn 分别开发的微喷射和涂层轮技术的属性,分别用于研究真空条件下高蒸气压和低蒸气压液体。我们的目标是强调每种技术的优缺点,并总结我们在使用它们进行散射和蒸发实验方面的经验教训。最后,我们描述了最近使用微喷射技术进行的 O2 与液体碳氢化合物之间能量转移、盐水中 HCl 离解以及超麦克斯韦氦蒸发的研究。

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