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用于通过质谱法对微反应器流出物进行实时分析的装置的开发。

Development of setups for real-time analysis of the effluent of a microreactor by mass spectrometry.

作者信息

Al Matari Amira, Chendo Christophe, Bouvarel Thomas, Arveiler Maël, Tatoulian Michaël, Venier Olivier, Delaunay Nathalie, Pichon Valérie

机构信息

Department of Analytical, Bioanalytical Sciences and Miniaturization (LSABM) Chemistry, Biology and Innovation (CBI), ESPCI Paris, PSL University, CNRS, 10 Rue Vauquelin, 75005, Paris, France.

Procédés-Plasmas-Microsystèmes, IRCP ENSCP-PSL/CNRS UMR 8247, 8247, Paris, France.

出版信息

Anal Bioanal Chem. 2023 Nov;415(26):6375-6387. doi: 10.1007/s00216-023-04932-z. Epub 2023 Sep 16.

Abstract

Monitoring a synthesis reaction in real time could allow not only the detection of the intermediates involved in the synthesis, to better understand its mechanisms, but also the impurities. Spectroscopic methods could be performed but are not so performant when analyzing complex mixtures and could require specific properties for the detection of the molecules of interest, the presence of a chromophore moiety for example. Mass spectrometry (MS) may overcome these limitations and is able to reach the accuracy and sensitivity required to efficiently detect, quantify, identify, and characterize the reagents and species produced during the synthesis. This is why the hyphenation of a microreactor with MS has already allowed synthesis processes to be monitored, but most of the time it targets a specific reaction or compounds and involves solvents compatible with MS. In this study, a universal setup for the hyphenation of a microreactor with MS and based on two valves has been developed. This two-valve setup has proven itself for the analysis of molecules of different nature and hydrophilicity, soluble in a large number of solvents even in non-MS-compatible ones. The developed setup evidenced a good repeatability and a linear response for the detection of the studied compounds. In addition, the dilution step included in the two-valve setup allows the MS monitoring of compounds initially synthesized at different concentrations. Finally, it was successfully used to study an amination reaction allowing the detection of the reaction products in 4 min with good repeatability as RSD values of MS signals were lower than 17%.

摘要

实时监测合成反应不仅可以检测合成过程中涉及的中间体,以更好地理解其反应机理,还能检测杂质。可以采用光谱方法,但在分析复杂混合物时性能欠佳,并且可能需要特定性质才能检测目标分子,例如存在发色团部分。质谱(MS)可能会克服这些限制,并且能够达到有效检测、定量、识别和表征合成过程中产生的试剂和物质所需的准确度和灵敏度。这就是为什么微反应器与质谱联用已经能够监测合成过程,但大多数情况下它针对特定反应或化合物,并且涉及与质谱兼容的溶剂。在本研究中,开发了一种基于两个阀门的微反应器与质谱联用的通用装置。这种双阀装置已证明可用于分析不同性质和亲水性的分子,这些分子可溶于大量溶剂,甚至是与质谱不兼容的溶剂。所开发的装置在检测所研究的化合物时具有良好的重复性和线性响应。此外,双阀装置中包含的稀释步骤允许对最初以不同浓度合成的化合物进行质谱监测。最后,它成功用于研究胺化反应,能够在4分钟内检测到反应产物,重复性良好,因为质谱信号的相对标准偏差(RSD)值低于17%。

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