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通过使用钯环预催化剂的双催化实现直接杂环C-H烯基化:高通量实验实现的多因素优化与范围探索

Direct Heterocycle C-H Alkenylation via Dual Catalysis Using a Palladacycle Precatalyst: Multifactor Optimization and Scope Exploration Enabled by High-Throughput Experimentation.

作者信息

Pipaón Fernández Nahiane, Cruise Odhran, Easton Sarah E F, Kaplan Justin M, Woodard John L, Hruszkewycz Damian P, Leitch David C

机构信息

Department of Chemistry, University of Victoria, 3800 Finnerty Road., Victoria, Briish Columbia V8P 5C2, Canada.

Chemical Development, GlaxoSmithKline, 1250 South Collegeville Road, Collegeville, Pennsylvania 19426, United States.

出版信息

J Org Chem. 2024 Nov 15;89(22):16145-16160. doi: 10.1021/acs.joc.3c02311. Epub 2024 Jan 11.

Abstract

One of the major challenges in developing catalytic methods for C-C bond formation is the identification of generally applicable reaction conditions, particularly if multiple substrate structural classes are involved. Pd-catalyzed direct arylation reactions are powerful transformations that enable direct functionalization of C-H bonds; however, the corresponding direct alkenylation reactions, using vinyl (pseudo) halide electrophiles, are less well developed. Inspired by process development efforts toward , an investigational active pharmaceutical ingredient, we report that a Pd(II) palladacycle derived from tri--butylphosphine and Pd(OAc) is an effective single-component precatalyst for a variety of direct alkenylation reactions. High-throughput experimentation identified optimal solvent/base combinations for a variety of HetAr-H substrate classes undergoing C-H activation without the need for cocatalysts or stoichiometric silver bases (e.g., AgCO). We propose this reaction proceeds via a dual cooperative catalytic mechanism, where in situ-generated Pd(0) supports a canonical Pd(0)/(II) cross-coupling cycle and the palladacycle effects C-H activation via CMD in a redox-neutral cycle. In all, 192 substrate combinations were tested with a hit rate of approximately 40% and 24 isolated examples. Importantly, this method was applied to prepare a key intermediate in the synthesis of on multigram scale.

摘要

开发用于碳-碳键形成的催化方法的主要挑战之一是确定普遍适用的反应条件,特别是当涉及多种底物结构类型时。钯催化的直接芳基化反应是强大的转化反应,能够实现碳-氢键的直接官能团化;然而,使用乙烯基(伪)卤化物亲电试剂的相应直接烯基化反应的发展程度较低。受针对一种研究性活性药物成分的工艺开发工作的启发,我们报道了一种由三叔丁基膦和醋酸钯衍生的钯(II)钯环配合物是用于多种直接烯基化反应的有效单组分预催化剂。高通量实验确定了多种经历碳-氢键活化的杂芳基-氢底物类型的最佳溶剂/碱组合,无需助催化剂或化学计量的银碱(如碳酸银)。我们提出该反应通过双重协同催化机制进行,其中原位生成的钯(0)支持典型的钯(0)/(II)交叉偶联循环,而钯环配合物通过氧化还原中性循环中的协同金属化-去质子化作用实现碳-氢键活化。总共测试了192种底物组合,命中率约为40%,得到24个分离实例。重要的是,该方法被应用于以多克规模制备某合成过程中的关键中间体。

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