Addressing Reproducibility Challenges in High-Throughput Photochemistry

JACS Au Pub Date : 2024-06-27 DOI:10.1021/jacsau.4c00312
Brenda Pijper, Lucía M. Saavedra, Matteo Lanzi, Maialen Alonso, Alberto Fontana, Marta Serrano, José Enrique Gómez, Arjan W. Kleij, Jesús Alcázar, Santiago Cañellas
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Abstract

Light-mediated reactions have emerged as an indispensable tool in organic synthesis and drug discovery, enabling novel transformations and providing access to previously unexplored chemical space. Despite their widespread application in both academic and industrial research, the utilization of light as an energy source still encounters challenges regarding reproducibility and data robustness. Herein we present a comprehensive head-to-head comparison of commercially available batch photoreactors, alongside the introduction of the use of batch and flow photoreactors in parallel synthesis. Hence, we aim to establish a reliable and consistent platform for light-mediated reactions in high-throughput mode. Herein, we showcase the identification of several platforms aligning with the rigorous demands for efficient and robust high-throughput experimentation screenings and library synthesis.

Abstract Image

应对高通量光化学中的可重复性挑战
光介导的反应已成为有机合成和药物发现领域不可或缺的工具,可实现新的转化,并提供进入以前未探索过的化学空间的途径。尽管它们在学术和工业研究中得到了广泛应用,但利用光作为能源仍然面临着可重复性和数据稳健性方面的挑战。在此,我们对市面上的批次光反应器进行了全面的正面比较,同时介绍了批次光反应器和流动光反应器在平行合成中的应用。因此,我们的目标是为高通量模式下的光介导反应建立一个可靠、一致的平台。在此,我们展示了几个平台的鉴定结果,这些平台符合高效、稳健的高通量实验筛选和文库合成的严格要求。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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