In this contribution, we report novel palladium-catalyzed carbonylative cascade approaches to highly functionalized polyheterocyclic structures. The Pd-catalyzed carbonylative process involves the regioselective insertion of one to three CO molecules and the sequential ordered formation of up to eight new bonds (one C-O, two C-C, five C-N). The exclusive formation of six-membered heterocycles is elucidated by detailed modeling studies.

Pancrazzi F., Sarti N., Mazzeo P.P., Bacchi A., Carfagna C., Mancuso R., et al. (2020). Site-Selective Double and Tetracyclization Routes to Fused Polyheterocyclic Structures by Pd-Catalyzed Carbonylation Reactions. ORGANIC LETTERS, 22(4), 1569-1574 [10.1021/acs.orglett.0c00171].

Site-Selective Double and Tetracyclization Routes to Fused Polyheterocyclic Structures by Pd-Catalyzed Carbonylation Reactions

Carfagna C.;
2020

Abstract

In this contribution, we report novel palladium-catalyzed carbonylative cascade approaches to highly functionalized polyheterocyclic structures. The Pd-catalyzed carbonylative process involves the regioselective insertion of one to three CO molecules and the sequential ordered formation of up to eight new bonds (one C-O, two C-C, five C-N). The exclusive formation of six-membered heterocycles is elucidated by detailed modeling studies.
2020
Pancrazzi F., Sarti N., Mazzeo P.P., Bacchi A., Carfagna C., Mancuso R., et al. (2020). Site-Selective Double and Tetracyclization Routes to Fused Polyheterocyclic Structures by Pd-Catalyzed Carbonylation Reactions. ORGANIC LETTERS, 22(4), 1569-1574 [10.1021/acs.orglett.0c00171].
Pancrazzi F.; Sarti N.; Mazzeo P.P.; Bacchi A.; Carfagna C.; Mancuso R.; Gabriele B.; Costa M.; Stirling A.; Della Ca' N.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/796802
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