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使用在线核磁共振技术在通用化学合成机器中对格氏反应进行标准化和控制。

Standardization and Control of Grignard Reactions in a Universal Chemical Synthesis Machine using online NMR.

作者信息

Bornemann-Pfeiffer Martin, Wolf Jakob, Meyer Klas, Kern Simon, Angelone Davide, Leonov Artem, Cronin Leroy, Emmerling Franziska

机构信息

Department 1: Analytical Chemistry, Reference Materials, Bundesanstalt für Materialforschung und -prüfung, Richard-Willstätter-Straße 11, 12489, Berlin, Germany.

Chair of Chemical and Process Engineering, Technische Universität Berlin, Marchstr. 23, 10587, Berlin, Germany.

出版信息

Angew Chem Int Ed Engl. 2021 Oct 18;60(43):23202-23206. doi: 10.1002/anie.202106323. Epub 2021 Aug 6.

Abstract

A big problem with the chemistry literature is that it is not standardized with respect to precise operational parameters, and real time corrections are hard to make without expert knowledge. This lack of context means difficult reproducibility because many steps are ambiguous, and hence depend on tacit knowledge. Here we present the integration of online NMR into an automated chemical synthesis machine (CSM aka. "Chemputer" which is capable of small-molecule synthesis using a universal programming language) to allow automated analysis and adjustment of reactions on the fly. The system was validated and benchmarked by using Grignard reactions which were chosen due to their importance in synthesis. The system was monitored in real time using online-NMR, and spectra were measured continuously during the reactions. This shows that the synthesis being done in the Chemputer can be dynamically controlled in response to feedback optimizing the reaction conditions according to the user requirements.

摘要

化学文献的一个大问题是,它在精确操作参数方面没有标准化,而且在没有专业知识的情况下很难进行实时校正。这种缺乏背景信息意味着可重复性困难,因为许多步骤含糊不清,因此依赖于隐性知识。在这里,我们展示了将在线核磁共振(NMR)集成到自动化化学合成机器(CSM,即“化学计算机”,它能够使用通用编程语言进行小分子合成)中,以便对反应进行实时自动分析和调整。该系统通过使用格氏反应进行了验证和基准测试,选择格氏反应是因为它们在合成中很重要。使用在线NMR对系统进行实时监测,并在反应过程中连续测量光谱。这表明,在化学计算机中进行的合成可以根据用户要求,根据反馈动态控制,以优化反应条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f783/8597166/f9cb0e1ae029/ANIE-60-23202-g004.jpg

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