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In Situ Characterization of Boehmite Particles in Water Using Liquid SEM

机译:液相扫描电镜对水中勃姆石颗粒的原位表征

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摘要

In situ imaging and elemental analysis of boehmite (AlOOH) particles in water is realized using the System for Analysis at the Liquid Vacuum Interface (SALVI) and Scanning Electron Microscopy (SEM). This paper describes the method and key steps in integrating the vacuum compatible SAVLI to SEM and obtaining secondary electron (SE) images of particles in liquid in high vacuum. Energy dispersive x-ray spectroscopy (EDX) is used to obtain elemental analysis of particles in liquid and control samples including deionized (DI) water only and an empty channel as well. Synthesized boehmite (AlOOH) particles suspended in liquid are used as a model in the liquid SEM illustration. The results demonstrate that the particles can be imaged in the SE mode with good resolution (i.e., 400 nm). The AlOOH EDX spectrum shows significant signal from the aluminum (Al) when compared with the DI water and the empty channel control. In situ liquid SEM is a powerful technique to study particles in liquid with many exciting applications. This procedure aims to provide technical know-how in order to conduct liquid SEM imaging and EDX analysis using SALVI and to reduce potential pitfalls when using this approach.
机译:使用液体真空界面分析系统(SALVI)和扫描电子显微镜(SEM),可以实现水中勃姆石(AlOOH)颗粒的原位成像和元素分析。本文介绍了将与真空兼容的SAVLI与SEM集成并在高真空下获得液体中颗粒的二次电子(SE)图像的方法和关键步骤。能量色散X射线光谱法(EDX)用于获得液体和对照样品中颗粒的元素分析,这些样品仅包括去离子水和空通道。悬浮在液体中的合成勃姆石(AlOOH)颗粒在液体SEM插图中用作模型。结果表明,可以以良好的分辨率(即400nm)在SE模式下对颗粒成像。与去离子水和空通道控件相比,AlOOH EDX光谱显示出来自铝(Al)的明显信号。原位液体SEM是一项功能强大的技术,可以研究许多令人兴奋的应用程序中的液体颗粒。该程序旨在提供技术知识,以便使用SALVI进行液体SEM成像和EDX分析,并减少使用此方法时的潜在陷阱。

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