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可见光照耀下硼酸对炔的邻位双官能化反应:通过底物控制快速构建 3-烷基取代香豆素和不饱和螺环化合物。

Visible-Light-Mediated Vicinal Difunctionalization of Activated Alkynes with Boronic Acids: Substrate-Controlled Rapid Access to 3-Alkylated Coumarins and Unsaturated Spirocycles.

机构信息

Department of Organic Chemistry, Indian Institute of Science, Bangalore 560012, Karnataka India.

出版信息

Org Lett. 2023 Feb 10;25(5):810-815. doi: 10.1021/acs.orglett.2c04333. Epub 2023 Jan 27.

Abstract

A visible-light-mediated difunctionalization of activated alkynes with boronic acid is unveiled to synthesize 3-alkylated coumarins and unsaturated spiro-lactones. The substituent at the -position of the aryl ring of aryl alkynoate plays a pivotal role in the selective formation of chain-alkylated coumarins or spirocyclic compounds under mild conditions. The reaction employs a hypervalent iodine reagent and ruthenium photocatalyst. The spiro-lactones thus obtained were subjected to another novel mode of visible-light-mediated radical addition cascade cyclization (RACC) to access various new fused spirocyclic compounds.

摘要

可见光促进硼酸对炔基化合物的双官能化反应被揭示,可用于合成 3-烷基取代香豆素和不饱和螺环内酯。在温和条件下,芳基炔酸酯的芳环 - 位取代基在选择性合成链烷基取代香豆素或螺环化合物中起着关键作用。该反应使用高价碘试剂和钌光催化剂。所得螺内酯进一步经历另一种新型可见光介导的自由基加成级联环化(RACC)反应,以获得各种新的稠合螺环化合物。

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