Synthesis and Photochemical Characterization of Indolizine Fluorophores Obtained by a Multicomponent Palladium Iodide−Catalyzed Oxidative Aminocarbonylation Approach

Author:

Ziccarelli Ida1ORCID,Amuso Roberta1ORCID,Mancuso Raffaella1ORCID,Maggiore Antonio2ORCID,Lamberti Giuseppe2,Vitale Paola3ORCID,Maiorano Vincenzo2,Veltri Lucia1,Gabriele Bartolo1ORCID

Affiliation:

1. Laboratory of Industrial and Synthetic Organic Chemistry (LISOC) Department of Chemistry and Chemical Technologies University of Calabria Via Pietro Bucci 12/C 87036 Arcavacata di Rende CS Italy

2. CNR-NANOTEC – Institute of Nanotechnology, c/o Campus Ecotekne Via Monteroni Lecce 73100 Italy

3. Department of Pharmacy – Pharmaceutical Sciences University of Bari “Aldo Moro” Via E. Orabona 4 70125 Bari Italy

Abstract

AbstractA catalytic carbonylative method for the direct, multicomponent synthesis of indolizine fluorophores has been developed. The process is based on the PdI2/KI‐catalyzed oxidative aminocarbonylation of 2‐(pyridin‐2‐yl)pent‐4‐yn‐1‐carbonyl compounds leading to the corresponding 2‐ynamide intermediates, followed in situ by 5‐exodig cyclization (by amine‐promoted conjugate addition of the pyridine ring nitrogen) and aromatization, to give the finally isolated N,N‐disubstituted 2‐(indolizin‐3‐yl)acetamides. Reactions are carried out under relatively mild conditions (100 °C under 20 atm of a 4 : 1 mixture CO−air for 6–15 h) in MeCN as the solvent and with a low catalyst loading (0.33 mol% PdI2), in the presence of 0.5 equiv. of KI and 3 equiv. of a secondary amine. The optical properties of representative 2‐(indolizin‐3‐yl)acetamide products have also been investigated.

Publisher

Wiley

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