1. Water-Tuned Tautomer-Selective Tandem Synthesis of the 5,6-Dihydropyrimidin-4(3H)-ones, Driven under the Umbrella of Sustainable Chemistry
- Author
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Nenad Janković, Nenad Joksimović, Zoran Ratković, Jelena Petronijević, Goran A. Bogdanović, Srđan Stefanović, Jovana Muškinja, Zorica M. Bugarčić, Slađana B. Novaković, and Milan Vraneš
- Subjects
Green chemistry ,Solvent free ,tautomer-selective ,Tandem ,010405 organic chemistry ,Renewable Energy, Sustainability and the Environment ,General Chemical Engineering ,Dihydrouracil ,General Chemistry ,short C=N bond ,010402 general chemistry ,Biginelli-Atwal reaction ,solvent-free ,01 natural sciences ,Combinatorial chemistry ,Tautomer ,0104 chemical sciences ,chemistry.chemical_compound ,chemistry ,diazoles ,green metrics ,Green metrics ,Environmental Chemistry ,dihydrouracil - Abstract
The selective synthesis of 5,6-dihydropyrimidin-4(3H)-one scaffold (precursor of dihydrouracil) was a very difficult synthetic challenge that, so far, has not been achieved. For the first time, in this paper, green, selective and high-yields approach to 40 novel 5,6-dihydropyrimidin-4(3H)-ones (DHPMs) by one-pot reaction of aldehydes, Meldrum's acid and isothioureas under solvent-free conditions, in the presence of water, since an additive is presented. In the majority of cases, introduced methodology gave an unprecedented tautomer-selective fashion toward targeted compounds with excellent tautomeric purity (>99.9%), which reached 100% in few cases. The molecular structure of the five compounds has been determined by X-ray crystallography. In each one of them, very short length for the corresponding N2-C1 bond was noticed, making them especially interesting from a structural standpoint. This experimental fact can imply a highly localized electron π density in this part of each heterocyclic ring. The obtained experimental results, which are determined from NMR and ESI-MS study, indicate that this Biginelli-type reaction smoothly proceeds in a one-pot mode, pointing to the three-step tandem process, proceeding via the Knoevenagel, aza-Michael, and retro-Diels-Alder reactions. The presented strategy also had the following advantages: reduction amount of waste, excellent values of green chemistry metrics (cEF, EcoScale and GCIS), and it is the first eco-friendly strategy toward the DHPMs scaffold. © Copyright 2018 American Chemical Society. Supporting data: [http://vinar.vin.bg.ac.rs/handle/123456789/7888]
- Published
- 2018
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