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用于机械化学研磨反应的实时和原位监测的拉曼光谱。

Raman spectroscopy for real-time and in situ monitoring of mechanochemical milling reactions.

机构信息

Ruđer Bošković Institute, Zagreb, Croatia.

出版信息

Nat Protoc. 2021 Jul;16(7):3492-3521. doi: 10.1038/s41596-021-00545-x. Epub 2021 Jun 4.

Abstract

Solid-state milling has emerged as an alternative, sustainable approach for preparing virtually all classes of compounds and materials. In situ reaction monitoring is essential to understanding the kinetics and mechanisms of these reactions, but it has proved difficult to use standard analytical techniques to analyze the contents of the closed, rapidly moving reaction chamber (jar). Monitoring by Raman spectroscopy is an attractive choice, because it allows uninterrupted data collection from the outside of a translucent milling jar. It complements the already established in situ monitoring based on powder X-ray diffraction, which has limited accessibility to the wider research community, because it requires a synchrotron X-ray source. The Raman spectroscopy monitoring setup used in this protocol consists of an affordable, small portable spectrometer, a laser source and a Raman probe. Translucent reaction jars, most commonly made from a plastic material, enable interaction of the laser beam with the solid sample residing inside the closed reaction jar and collection of Raman-scattered photons while the ball mill is in operation. Acquired Raman spectra are analyzed using commercial or open-source software for data analysis (e.g., MATLAB, Octave, Python, R). Plotting the Raman spectra versus time enables qualitative analysis of reaction paths. This is demonstrated for an example reaction: the formation in the solid state of a cocrystal between nicotinamide and salicylic acid. A more rigorous data analysis can be achieved using multivariate analysis.

摘要

固态球磨已成为一种替代的、可持续的方法,可以用来制备几乎所有种类的化合物和材料。原位反应监测对于理解这些反应的动力学和机制至关重要,但事实证明,使用标准分析技术来分析封闭、快速移动的反应室(罐)的内容物非常困难。拉曼光谱监测是一种很有吸引力的选择,因为它可以从半透明研磨罐的外部进行不间断的数据采集。它补充了已经建立的基于粉末 X 射线衍射的原位监测,后者由于需要同步加速器 X 射线源,因此对更广泛的研究界的可及性有限。本协议中使用的拉曼光谱监测设置包括价格实惠、小巧便携的光谱仪、激光源和拉曼探头。半透明反应罐通常由塑料材料制成,可使激光束与封闭反应罐内的固体样品相互作用,并在球磨机运行时收集拉曼散射光子。使用商业或开源软件(例如 MATLAB、Octave、Python、R)进行数据分析来分析采集到的拉曼光谱。将拉曼光谱随时间的变化绘制出来,可以对反应路径进行定性分析。这通过一个示例反应来演示:在固态中,烟酰胺和水杨酸形成共晶。使用多元分析可以实现更严格的数据分析。

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