(3+2)‐Cyclization Reactions of Unsaturated Phosphonites with Aldehydes and Thioketones

Author:

Munasinghe Don S.12,Kasper Marc‐André12,Jasiński Radomir3,Kula Karolina3,Palusiak Marcin4,Celeda Małgorzata4,Mlostoń Grzegorz4,Hackenberger Christian P. R.12ORCID

Affiliation:

1. Leibniz-Forschungsinstitut für Molekulare Pharmakologie (FMP) Robert-Rössle-Strasse 10 Berlin 13125 Germany

2. Department of Chemistry Humboldt Universität zu Berlin Brook-Taylor-Str.2 Berlin 12489 Germany

3. Department of Organic Chemistry and Technology Cracow University of Technology Warszawska 24 31-155 Cracow Poland

4. Faculty of Chemistry University of Lodz Łódź Tamka 12 91-403 Lodz Poland

Abstract

AbstractBy exploiting the unique reactivity of ethynyl‐phosphonites we obtain novel P(V)‐containing five‐membered heterocycles via (3+2)‐cyclization reactions with aldehydes or cycloaliphatic thioketones in satisfactory to excellent yields. Whereas reactions with thioketones to yield 1,3‐thiaphospholes‐3‐oxides occur smoothly at room temperature with equimolar amounts of the starting materials in absence of any catalyst, the analogous conversions with aldehydes to generate 3‐oxides of 1,3‐oxaphospholes require addition of triethylamine as a base. We postulate a step‐wise (3+2)‐cyclization mechanism for the formation of the 1,3‐thiaphosphole ring based on DFT quantum chemical calculations. With this study, we introduce new cyclization reactions originating from unsaturated phosphonites as central synthetic building blocks to yield previously inaccessible stable phosphorus‐containing heterocycles with unexplored potential for the molecular sciences.

Funder

Deutsche Forschungsgemeinschaft

Alexander von Humboldt-Stiftung

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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