Efficient Synthesis of Dihydropyrimidines Using a Highly Ordered Mesoporous Functionalized Pyridinium Organosilica

Author:

Rajabi FatemehORCID,Sillanpää MikaORCID,Len ChristopheORCID,Luque RafaelORCID

Abstract

A Brönsted acidic ionic solid pyridinium-functionalized organosilica network (PMO-Py-IL) was demonstrated to efficiently catalyse one-pot Biginelli condensation reaction. The green synthesis of 3,4-dihydro-2(H)-pyrimidinones (DHPMs) with high yield was carried out via one-pot three component condensation of β- dicarbonyls, aldehydes, and urea in the presence of a catalytic amount of PMO-Py-IL nanomaterial as an efficient nanocatalyst under solvent free conditions. Furthermore, the catalyst showed outstanding stability and could be easily separated and reused for at least ten reaction runs without significant loss of activity and product selectivity. The green protocol features simple set-up, cost-effectiveness, easy work-up, eco-friendly and mild reaction conditions.

Publisher

MDPI AG

Subject

Physical and Theoretical Chemistry,Catalysis

Reference68 articles.

1. Dihydropyridines Progress in Pharmacology and Therapy;Busse,1993

2. Pyrimidine as Constituent of Natural Biologically Active Compounds

3. Modification of pyrimidine derivatives from antiviral agents to antitumor agents;Kimura;Anticancer Res.,2006

4. Biological activity of dihydropyrimidinone (DHPM) derivatives: A systematic review;Santana;Eur. J. Med. Chem.,2018

5. Synthesis, biological evaluation and molecular docking studies of some pyrimidine derivatives

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