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Vibrational Spectroscopy in Studies of Atmospheric Corrosion

机译:振动光谱法在大气腐蚀研究中的应用

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摘要

Vibrational spectroscopy has been successfully used for decades in studies of the atmospheric corrosion processes, mainly to identify the nature of corrosion products but also to quantify their amounts. In this review article, a summary of the main achievements is presented with focus on how the techniques infrared spectroscopy, Raman spectroscopy, and vibrational sum frequency spectroscopy can be used in the field. Several different studies have been discussed where these instruments have been used to assess both the nature of corrosion products as well as the properties of corrosion inhibitors. Some of these techniques offer the valuable possibility to perform in-situ measurements in real time on ongoing corrosion processes, which allows the kinetics of formation of corrosion products to be studied, and also minimizes the risk of changing the surface properties which may occur during ex-situ experiments. Since corrosion processes often occur heterogeneously over a surface, it is of great importance to obtain a deeper knowledge about atmospheric corrosion phenomena on the nano scale, and this review also discusses novel vibrational microscopy techniques allowing spectra to be acquired with a spatial resolution of 20 nm.
机译:振动光谱已经在大气腐蚀过程的研究中成功使用了数十年,主要用于识别腐蚀产物的性质,还可以量化其数量。在这篇综述文章中,对主要成就进行了总结,重点介绍了如何在该领域中使用红外光谱,拉曼光谱和振动和频光谱技术。已经讨论了几种不同的研究,其中这些仪器已用于评估腐蚀产物的性质以及缓蚀剂的性质。这些技术中的一些为在进行中的腐蚀过程中进行实时原位测量提供了宝贵的可能性,这使得可以研究腐蚀产物的形成动力学,并且还最大程度地降低了在腐蚀过程中可能发生的改变表面性能的风险。原位实验。由于腐蚀过程通常在表面上异质发生,因此获得有关纳米级大气腐蚀现象的更深入的知识非常重要,并且本综述还讨论了新颖的振动显微镜技术,该技术允许以20 nm的空间分辨率获取光谱。

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