在线红外和核磁共振在流动化学中的应用综述

Yan Zhang, Wei Su
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引用次数: 0

摘要

作为一种安全高效的合成技术,流动化学近来在制药、材料和环保行业备受关注。然而,研究人员在处理样品和选择足够灵活的分析技术方面始终面临挑战。一般来说,实时过程分析对于监测反应至关重要。流动化学与实时过程分析的结合有利于研究反应动力学和热力学、监测和控制化学合成过程、宏观和微观反应器的反应优化以及化合物的定性和定量分析。迄今为止,将流动化学与在线监测相结合的研究包括紫外-红外光谱法、拉曼光谱法、气相色谱法、质谱法、液相色谱法、核磁共振 (NMR) 光谱法以及其他自动化的常规或非常规方法。本综述揭示了在线红外和在线核磁共振光谱在流动化学中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Review of Inline Infrared and Nuclear Magnetic Resonance Applications in Flow Chemistry
As a safe and efficient synthesis technique, flow chemistry has recently gained attention in the pharmaceutical, materials, and environmental protection industries. However, researchers always face challenges in handling samples and selecting sufficiently flexible analytical techniques. Generally, real-time process analysis is crucial for monitoring reactions. The combination of flow chemistry with real-time process analysis can be beneficial for studying reaction kinetics and thermodynamics, monitoring, and control of the chemical synthesis processes, reaction optimization of macro and microreactors, and qualitative and quantitative analyses of compounds. Thus far, studies investigating the combination of flow chemistry with inline monitoring have included ultraviolet–infrared spectroscopy, Raman spectroscopy, gas chromatography, mass spectrometry, liquid chromatography, nuclear magnetic resonance (NMR) spectroscopy, and other automated conventional or unconventional methods. This review sheds light on applying inline infrared and inline NMR spectroscopies in flow chemistry.
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