4.6 Article

Understanding the Molecular Mechanism of Thermal and LA-Catalysed Diels-Alder Reactions between Cyclopentadiene and Isopropyl 3-Nitroprop-2-Enate

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MOLECULES
卷 28, 期 14, 页码 -

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MDPI
DOI: 10.3390/molecules28145289

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Diels-Alder reaction; nitroalkene; molecular mechanism; molecular electron density theory; DFT calculations

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The molecular mechanism of the Diels-Alder reaction depends on the reaction conditions and solvent polarity, with possible pathways including one-step polar mechanisms and stepwise mechanisms involving zwitterionic or heterocyclic intermediates.
The molecular mechanism of the Diels-Alder reaction with the participation of cyclopentadiene and isopropyl 3-nitroprop-2-enate was examined based on wb97xd/6-311+G(d) (PCM) quantum chemical calculations. It was found that the type of mechanism for the conversion of addends depends significantly on the reaction conditions. In less-polar environments, a one-step polar mechanism is realised. In more polar solvents, the formation of extended-type zwitterionic intermediates is possible. In contrast, in the presence of an LA-type catalyst, the one-step mechanisms are replaced by respective stepwise mechanisms with zwitterionic or heterocyclic intermediates.

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