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喷雾模式对电喷雾中液滴形成和离子化学的影响。

Spraying mode effect on droplet formation and ion chemistry in electrosprays.

作者信息

Nemes Peter, Marginean Ioan, Vertes Akos

机构信息

Department of Chemistry and W.W. Keck Institute for Proteomics Technology and Applications, George Washington University, Washington, D.C. 20052, USA.

出版信息

Anal Chem. 2007 Apr 15;79(8):3105-16. doi: 10.1021/ac062382i. Epub 2007 Mar 23.

Abstract

Depending on the spraying conditions and fluid properties, a variety of electrospray regimes exists. Here we explore the changes in ion production that accompany the transitions among the three axial spraying modes, the burst mode, the pulsating Taylor cone mode, and the cone-jet mode. Spray current oscillation and phase Doppler anemometry measurements, fast imaging of the electrified meniscus, and mass spectrometry are utilized to study the formation, size, velocity, and chemical composition of droplets produced in the three modes. High-speed images indicate that the primary droplets are produced by varicose waves and lateral kink instabilities on the liquid jet emerging from the Taylor cone, whereas secondary droplets are formed by fission. Dramatic changes in the droplet size distributions result from the various production and breakup mechanisms observed at different emitter voltages and liquid flow rates. We demonstrate that droplet fission can be facilitated by space charge effects along the liquid jet and in the plume. Compared to the other two regimes, a significantly enhanced signal-to-noise ratio, a lower degree of analyte oxidation, and milder fragmentation are observed for the cone-jet mode.

摘要

根据喷雾条件和流体性质,存在多种电喷雾模式。在此,我们探讨了在三种轴向喷雾模式(爆发模式、脉动泰勒锥模式和锥射流模式)之间转变时伴随的离子产生变化。利用喷雾电流振荡和相位多普勒风速测量、带电弯月面的快速成像以及质谱分析来研究这三种模式下产生的液滴的形成、大小、速度和化学成分。高速图像表明,初级液滴是由从泰勒锥喷出的液体射流上的静脉曲张波和横向扭结不稳定性产生的,而次级液滴则是由裂变形成的。在不同的发射极电压和液体流速下观察到的各种产生和破碎机制导致了液滴尺寸分布的显著变化。我们证明,沿着液体射流和羽流的空间电荷效应可以促进液滴裂变。与其他两种模式相比,锥射流模式具有显著提高的信噪比、较低的分析物氧化程度和较温和的碎片化。

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