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碘鎓引导的C-H偶联的力量:一种卤素物尽其用的基团转移策略。

The Power of Iodane-Guided C-H Coupling: A Group-Transfer Strategy in Which a Halogen Works for Its Money.

作者信息

Chen Wei W, Cuenca Ana B, Shafir Alexandr

机构信息

Dept. of Biological Chemistry and Centro de Innovación en Química Avanzada (ORFEO-CINQA), Institute of Advanced Chemistry of Catalonia (IQAC-CSIC), c/Jordi Girona 18-26, 08034, Barcelona, Spain.

Dept. of Organic and Pharmaceutical Chemistry, Institut Químic de Sarrià, Universitat Ramon Llull, Via Augusta 390, 08017, Barcelona, Spain.

出版信息

Angew Chem Int Ed Engl. 2020 Sep 14;59(38):16294-16309. doi: 10.1002/anie.201908418. Epub 2020 Jul 21.

DOI:10.1002/anie.201908418
PMID:31476258
Abstract

Hypervalent organoiodane reagents are ubiquitous in organic synthesis, both as oxidants and as electrophilic group-transfer agents. In addition to these hallmark applications, a complementary strategy is gaining momentum that exploits the ability of λ -iodanes to undergo iodine-to-arene group transfer, for example, via iodonio-Claisen-type rearrangement processes. This Minireview discusses recent advances in the use of this method to access a variety of the C-H-functionalized iodoarenes. While Section 2 is focused on the ortho C-H propargylation, allylation, and the more unusual para C-H benzylation, Section 3 is devoted to the C-arylation of enol and phenol substrates. The accompanying discussion includes mechanistic considerations and goes into the synthetic applications of the final iodoarene cores. The Minireview concludes with further conceptual extensions of the method, including the use of non-conventional coupling partners (for example, cyanoalkylation), improved access to λ -iodane building blocks, and the development of iterative approaches to polysubstituted iodoarenes.

摘要

高价有机碘试剂在有机合成中无处不在,既可用作氧化剂,也可用作亲电基团转移试剂。除了这些标志性应用外,一种互补策略正逐渐兴起,该策略利用λ-碘烷进行碘到芳烃的基团转移的能力,例如,通过碘鎓-克莱森型重排过程。本综述讨论了使用该方法获得各种C-H官能化碘芳烃的最新进展。第2节重点讨论邻位C-H炔丙基化、烯丙基化以及更不常见的对位C-H苄基化,第3节则专门讨论烯醇和酚底物的C-芳基化。附带的讨论包括机理方面的考虑,并深入探讨了最终碘芳烃核心的合成应用。本综述最后对该方法进行了进一步的概念扩展,包括使用非常规偶联伙伴(例如氰基烷基化)、改进对λ-碘烷结构单元的获取以及开发多取代碘芳烃的迭代方法。

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