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By using a quantum-chemical approach, B2PLYP-D2/6-311+G**//B3LYP/6-31+G*, we have carried out a detailed study of the assembly of 1-pyrrolines from -benzyl-1-phenylmethanimine and phenylacetylene in the superbasic medium KOBu/dimethyl sulfoxide (DMSO). In this way, we have considered, both theoretically and experimentally, the mechanisms of the assembly through a concerted and stepwise nucleophilic cycloaddition and have addressed the side processes accompanying the assembly. It is found that the assembly via the concerted cycloaddition is kinetically more favorable than that via the stepwise cycloaddition. At the same time, the reaction of C-vinylation of aldimine with phenylacetylene occurs with a similar activation energy as the concerted cycloaddition and leads to the formation of 2-aza-1,4-pentadiene. The anion of 2-aza-1,4-pentadiene is an intermediate for the side processes leading to the formation of triarylpyridines and 1,3-diarylpropan-1-ones. Triarylpyridines are formed through the concerted cycloaddition of the next phenylacetylene molecule to 2-aza-1,4-pentadiene, while 1,3-diarylpropan-1-ones are formed as a result of the hydrolysis of 2-aza-1,4-pentadienes. It is found out that the mild conditions for the assembly of 1-pyrrolines (60 °C, 15 min) relate to the formation of complexes in the KOBu/DMSO superbasic medium, where the anion is readily accessible for the nucleophilic attack by the phenylacetylene molecule.
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http://dx.doi.org/10.1021/acs.joc.3c00333 | DOI Listing |
Acc Chem Res
July 2025
Department of Chemistry, Sungkyunkwan University, Suwon, 16419, Republic of Korea.
ConspectusWater, an environmentally friendly and benign reaction medium, has traditionally been underestimated for its use in organic synthesis because it offers limited substrate solubility and can lead to undesired side reactions. However, recent studies have demonstrated that water can actively participate in catalysis, significantly enhancing reactivity and selectivity. The unique physicochemical properties of water can unlock reactivity paradigms that are inaccessible using conventional organic solvents.
View Article and Find Full Text PDFPhys Chem Chem Phys
April 2025
Departamento de Química Fundamental, Instituto de Química, Universidade de São Paulo, São Paulo 05508-900, Brazil.
The DBU-CO adduct was characterized for the first time by C NMR with labelled CO and IR spectroscopy. Theoretical calculations were crucial to determine that the adduct is stable in ionic liquid medium in the presence of water. These findings provide new insights into superbase-CO interactions, unveiling a new potential route to CO activation.
View Article and Find Full Text PDFAngew Chem Int Ed Engl
January 2025
Departamento de Bioquímica y Biología Molecular B e Inmunología, Facultad de Química, Universidad de Murcia. Campus de Espinardo, E-30100, Murcia, Spain.
This study introduces a novel and sustainable approach using Ionic Liquids (ILs) as a non-innocent solvent that enhances the performance of the basic catalysts to depolymerize polyurethane foam wastes (PUFWs) through hydrolysis, alcoholysis or aminolysis under mild conditions. The system is stable, fully recoverable, and reusable. Hydrolysis of PUFWs can occur in just 2 minutes at 95-98 °C, producing a white polyol that is easily separated and reused in new polyurethane synthesis.
View Article and Find Full Text PDFRSC Adv
July 2024
Materials Chemistry Division, Department of Chemistry, University of Helsinki 00560 Helsinki Finland
A sustainable homogeneous transcarbamoylation/transurethanization protocol for cellulose modification with methyl -substituted carbamates was developed. The protocol utilizes the superbase ionic liquid [mTBNH][OAc], not only as a green reaction medium, but also as a promotor of the transformation. This approach allows to obtain different cellulose carbamates with controllable degrees of substitution.
View Article and Find Full Text PDFBeilstein J Org Chem
August 2023
Laboratory of New Organic Materials, Omsk State Technical University, 11 Mira Ave., 644050 Omsk, Russian Federation.
An effective one-pot strategy was developed for the synthesis of 4-arylpyrazolo[3,4-]pyridin-6-ones from pyrazolo[3,4-]pyridin-6-ones, obtained by reacting 5-aminopyrazoles with 4-arylidene-2-phenyloxazol-5(4)-ones (azlactones) under solvent-free conditions, through subsequent elimination of a benzamide molecule in a superbasic medium (-BuOK/DMSO). The fluorescent properties of the synthesized compounds were studied. 4-Arylpyrazolo[3,4-]pyridin-6-ones luminesce in the region of 409-440 nm with a quantum yield of 0.
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