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分子雕刻术:一种通过光催化苯甲酸酯氢化脱氟快速获得各种氟化芳烃的多用途工具。

Molecular Sculpting: A Multipurpose Tool for Expedited Access to Various Fluorinated Arenes via Photocatalytic Hydrodefluorination of Benzoates.

机构信息

Department of Chemistry, Oklahoma State University, Stillwater, Oklahoma 74078, United States.

出版信息

J Org Chem. 2023 May 19;88(10):6434-6444. doi: 10.1021/acs.joc.2c02332. Epub 2023 Jan 19.

Abstract

Starting with highly fluorinated benzoates, we develop the directed photocatalytic hydrodefluorination (HDF) of fluorinated aryl benzoates and demonstrate its synergistic use with other HDF strategies, along with C-H arylation, decarboxylative coupling, and decarboxylative protonation, to access most fluorination patterns found in benzoate derivatives and by extension benzene derivatives via a molecular sculpting approach. Mild reaction conditions and excellent regioselectivity make the approach ideal for synthesis. This approach provides access to 16 benzoate derivatives with different fluorination patterns from just a couple of highly fluorinated, commercially available benzoic acids. We synthesize key intermediates or the active pharmaceutical ingredient for sitagliptin, diflunisal, and other pharmaceutically important molecules. Importantly, we provide key insights into relative rates of defluorination and strategies to alter these rates. We provide demonstrations of the synergistic use of HDF and related technologies to rapidly enhance the synthetic complexity of these simple commercially available perfluoroarenes to form complex partially fluorinated molecules.

摘要

从高度氟化的苯甲酸酯开始,我们开发了导向光催化氢氟化(HDF)氟化芳基苯甲酸酯,并展示了其与其他 HDF 策略的协同作用,以及 C-H 芳基化、脱羧偶联和脱羧质子化,以通过分子造型方法获得在苯甲酸酯衍生物中发现的大多数氟化模式,并进一步扩展到苯衍生物。温和的反应条件和出色的区域选择性使该方法非常适合合成。该方法仅从几种高度氟化的商业上可获得的苯甲酸中即可获得 16 种具有不同氟化模式的苯甲酸酯衍生物。我们合成了西他列汀、双氯芬酸和其他重要药物分子的关键中间体或活性药物成分。重要的是,我们提供了有关相对脱氟速率和改变这些速率的策略的关键见解。我们展示了 HDF 和相关技术的协同使用,可以快速提高这些简单商业可得的全氟芳烃的合成复杂性,形成复杂的部分氟化分子。

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