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三(4-溴苯基)氨基六氯锑酸盐介导的文多灵与β-酮酯及相关化合物的分子间 C(sp)-C(sp)自由基偶联。

Tris(4-bromophenyl)aminium Hexachloroantimonate-Mediated Intermolecular C(sp)-C(sp) Free Radical Coupling of Vindoline with β-Ketoesters and Related Compounds.

机构信息

Department of Chemistry and The Skaggs Institute for Chemical Biology, The Scripps Research Institute, 10550 N. Torrey Pines Road, La Jolla, California 92037, United States.

出版信息

J Am Chem Soc. 2022 Jan 12;144(1):495-502. doi: 10.1021/jacs.1c10971. Epub 2021 Dec 28.

Abstract

A powerful tris(4-bromophenyl)aminium hexachloroantimonate (BAHA) mediated regioselective intermolecular coupling reaction of vindoline with a wide range of substrates that include β-ketoesters, β-diketones, β-ketoaldehydes, β-ketonitriles, β-ketolactones, β-ketolactams, β-cyanoesters, and malononitriles is detailed. The BAHA-promoted intermolecular sp/sp coupling, representing a special class of selective C-H functionalization reactions with direct carbon-carbon bond formation, proceeds with generation of a quaternary center bound to the aryl C15 center of vindoline capable of accommodating of the vinblastine C16' methyl ester and functionalized for subsequent divergent heterocycle introduction. A comprehensive examination of the reaction scope, optimization of subtle reaction parameters, and key insights into the reaction mechanism are described. Contrary to what might be prevailing expectations, studies suggest the plausible mechanism entails initial single-electron oxidation of the substrate enolate, not vindoline, and subsequent regiospecific addition of the resulting electrophilic radical to vindoline. As such and beyond the new arylation reaction with vindoline, the studies define a host of new, previously unrecognized, applications of BAHA and related triarylaminium radical cations that arises from their ability to generate stabilized electrophilic radicals from β-ketoesters and related substrates under nonreducing and metal-free conditions. Those exemplified herein include mediating stabilized enolate free radical arylation, dimerization, allylation, alkene addition, and α-oxidation reactions.

摘要

详细介绍了一种强大的三(4-溴苯基)氨基六氯锑酸盐(BAHA)介导的吲哚里西啶生物碱 vindoline 与各种底物的区域选择性分子间偶联反应,包括β-酮酯、β-二酮、β-酮醛、β-酮腈、β-酮内酯、β-酮内酰胺、β-氰基酯和丙二腈。BAHA 促进的分子间 sp/sp 偶联反应代表了一类特殊的选择性 C-H 功能化反应,直接形成碳-碳键,生成一个与 vindoline 的芳基 C15 中心结合的季碳原子,能够容纳长春碱 C16' 甲酯,并进行后续的发散杂环引入。描述了对反应范围的全面考察、微妙反应参数的优化以及对反应机制的关键见解。与可能流行的预期相反,研究表明,合理的机制需要底物烯醇化物而不是 vindoline 的初始单电子氧化,随后是所得亲电自由基对 vindoline 的区域特异性加成。因此,除了与 vindoline 的新芳基化反应之外,这些研究还定义了一系列新的、以前未被认识到的 BAHA 和相关三芳基铵自由基阳离子的应用,这是由于它们能够在非还原和无金属条件下从β-酮酯和相关底物中生成稳定的亲电自由基。其中包括介导稳定烯醇化物自由基芳基化、二聚化、烯丙基化、烯烃加成和α-氧化反应。

相似文献

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[Weitz' aminium salt initiated electron transfer reactions and application to the synthesis of natural products].
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