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贝叶斯优化驱动的多参数并行筛选用于联芳基化合物的流动合成

Bayesian optimization-driven parallel-screening of multiple parameters for the flow synthesis of biaryl compounds.

作者信息

Kondo Masaru, Wathsala H D P, Salem Mohamed S H, Ishikawa Kazunori, Hara Satoshi, Takaai Takayuki, Washio Takashi, Sasai Hiroaki, Takizawa Shinobu

机构信息

Department of Materials Science and Engineering, Graduate School of Science and Engineering, Ibaraki University, Naka-narusawa, Hitachi, Ibaraki, 316-8511, Japan.

SANKEN, Osaka University, Mihogaoka, Ibaraki-shi, Osaka, 567-0047, Japan.

出版信息

Commun Chem. 2022 Nov 10;5(1):148. doi: 10.1038/s42004-022-00764-7.

Abstract

Traditional optimization methods using one variable at a time approach waste time and chemicals and assume that different parameters are independent from one another. Hence, a simpler, more practical, and rapid process for predicting reaction conditions that can be applied to several manufacturing environmentally sustainable processes is highly desirable. In this study, biaryl compounds were synthesized efficiently using an organic Brønsted acid catalyst in a flow system. Bayesian optimization-assisted multi-parameter screening, which employs one-hot encoding and appropriate acquisition function, rapidly predicted the suitable conditions for the synthesis of 2-amino-2'-hydroxy-biaryls (maximum yield of 96%). The established protocol was also applied in an optimization process for the efficient synthesis of 2,2'-dihydroxy biaryls (up to 97% yield). The optimized reaction conditions were successfully applied to gram-scale synthesis. We believe our algorithm can be beneficial as it can screen a reactor design without complicated quantification and descriptors.

摘要

传统的一次只使用一个变量的优化方法既浪费时间和化学试剂,又假定不同参数相互独立。因此,非常需要一种更简单、更实用且快速的预测反应条件的方法,该方法可应用于多个制造环境可持续的过程。在本研究中,使用有机布朗斯特酸催化剂在流动体系中高效合成了联芳基化合物。贝叶斯优化辅助的多参数筛选采用独热编码和适当的采集函数,快速预测了合成2-氨基-2'-羟基联芳基化合物的合适条件(最高产率96%)。所建立的方案也应用于2,2'-二羟基联芳基化合物高效合成的优化过程(产率高达97%)。优化后的反应条件成功应用于克级合成。我们相信我们的算法会很有用,因为它无需复杂的定量和描述符就能筛选反应器设计。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5840/9814103/81a2b8485c8e/42004_2022_764_Fig1_HTML.jpg

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