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(杂)芳基溴化物与NHP酯的脱羧交叉亲电偶联反应

Decarboxylative Cross-Electrophile Coupling of (Hetero)Aromatic Bromides and NHP Esters.

作者信息

DeCicco Ethan M, Berritt Simon, Knauber Thomas, Coffey Steven B, Hou Jie, Dowling Matthew S

机构信息

Medicine Design, Pfizer, Inc., Eastern Point Road, Groton, Connecticut 06340, United States.

WuXi AppTec, 288 Fute Zhong Road, Waigaoqiao Free Trade Zone, Shanghai 200131, China.

出版信息

J Org Chem. 2023 Sep 1;88(17):12329-12340. doi: 10.1021/acs.joc.3c01072. Epub 2023 Aug 23.

Abstract

Aryl bromides are known to be challenging substrates in the decarboxylative cross-electrophile coupling with redox-active NHP esters-the majority of such processes utilize aryl iodides. Herein, we describe the development of conditions that are suitable for the decarboxylative cross-electrophile coupling of NHP esters and a wide range of (hetero)aryl bromides. The key advances that allowed for the use of aryl bromides in this reaction are (1) the identification of ligand as an optimal ligand for the use of electron-neutral and deficient aryl bromides and (2) the significant improvement in yield that iodide salts and excess heterogenous zinc impart to this reaction. A wide variety of NHP esters perform well under the optimized conditions, including methyl, primary, secondary, and several strained tertiary systems. Likewise, a variety of aromatic and heteroaromatic bromides relevant to medicinal chemistry perform well in this transformation, including an aryl bromide precursor to the known drug dapagliflozin.

摘要

已知芳基溴化物在与氧化还原活性NHP酯的脱羧交叉亲电偶联反应中是具有挑战性的底物——大多数此类反应使用芳基碘化物。在此,我们描述了适用于NHP酯与多种(杂)芳基溴化物进行脱羧交叉亲电偶联反应的条件的开发。使得芳基溴化物能够用于该反应的关键进展包括:(1)鉴定出配体是用于电子中性和缺电子芳基溴化物的最佳配体;(2)碘化物盐和过量非均相锌对该反应产率的显著提高。多种NHP酯在优化条件下表现良好,包括甲基、伯、仲以及几种环状叔体系。同样,多种与药物化学相关的芳香族和杂芳香族溴化物在该转化反应中表现良好,包括已知药物达格列净的芳基溴化物前体。

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