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Recent trends in synthetic strategies using magnetic nanostructures as green catalysts in synthesis of pyran analogues
Authors:Surbhi Dhadda  Shaily Sharma  Prakash Jakhar  Himanshu Sharma
Affiliation:1. Department of Chemistry, Vivekananda Global University, Jaipur, Rajasthan, India;2. Microwave chemistry lab, Department of Chemistry, UCOS, Mohanlal Sukhadia University, Udaipur, Rajasthan, India
Abstract:In recent years, magnetic nanoparticles and nanocomposites play an important role as a nanocatalyst in the creation of a wide range of bioactive heterocycles with extraordinarily high activity and selectivity, low energy consumption, and extended life. Among all heterocycles, many natural products, pharmaceuticals, and bioactive compounds contain pyran scaffolds which have a wide range of uses in biomedical research, industry, and medicine. Additionally, these are also widely used in the synthesis of novel heterocyclic systems as precursors. This study focused on recent advances in the last 5 years in using various magnetic recoverable and recycled nanoparticles and nanocomposites to synthesize pyran derivatives and their pharmacological activity. This article has been classified into three subsections: (i) MNPs-metal nanocomposite catalyzed reactions, (ii) MNPs-organic based nanocomposite catalyzed reactions, and (iii) MNPs-ionic liquid nanocomposite catalyzed reactions and (iv) MNPs-acid based nanocomposite to describe catalytic efficiency of magnetic nanocomposites for the synthesis of pyran derivatives. A comparative study of nanocomposites and different approaches for green synthesis of pyrans by highlighting the advantages and disadvantages along with catalyst recovery and recyclability has been mentioned, which will help scientists to probe and stimulate the study of these scaffolds.
Keywords:bioactive heterocycles  green synthesis  magnetic nanoparticles  nanocatalysis  pyran derivatives
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