Green methods mediated synthesis of chromene derivatives using magnetic nanoparticles as heterogeneous and reusable nanocatalyst: A review

One of the most venerable areas in synthetic organic chemistry is the synthesis of heterocyclic molecules. Chromene, a naturally occurring compound, occupies a significant position in the arena of heterocyclic chemistry, serving as a preferred framework for the synthesis of a variety of chemical sca...

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Veröffentlicht in:Tetrahedron 2024-01, Vol.150, p.133741, Article 133741
Hauptverfasser: Chadha, Manisha, Garg, Ankita, Bhalla, Aman, Berry, Shiwani
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creator Chadha, Manisha
Garg, Ankita
Bhalla, Aman
Berry, Shiwani
description One of the most venerable areas in synthetic organic chemistry is the synthesis of heterocyclic molecules. Chromene, a naturally occurring compound, occupies a significant position in the arena of heterocyclic chemistry, serving as a preferred framework for the synthesis of a variety of chemical scaffolds intended for therapeutic and diagnostic applications. Furthermore, the utilization of magnetic nanocatalysts and is an exponentially expanding domain in the pursuit of sustainable and environmentally friendly methodologies. Therefore, considering the importance of chromene derivatives in the realm of heterocyclic chemistry and magnetic nanoparticles as green and sustainable methods in green synthetic chemistry, we hereby demonstrate the most recent developments pertaining to the fabrication of chromene and its multifarious derivatives. This comprehensive review mainly encompasses the advancements in synthetic methodologies from 2018 to 2022 employing various magnetic nanocatalysts under environmentally friendly conditions including (1) water as solvent, (2) ethanol as solvent, (3) water:ethanol as solvent, (4) solvent-free approach.
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subjects domain
heterocyclic compounds
magnetism
nanocatalysts
nanoparticles
organic chemistry
solvents
therapeutics
title Green methods mediated synthesis of chromene derivatives using magnetic nanoparticles as heterogeneous and reusable nanocatalyst: A review
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