Infusion of Magnetic Nanocatalyst to Microwave Propped Synthesis of Bioactive Azaheterocycles

Author:

Hadole Pranali1,Shingda Sampat1,Mondal Aniruddha2,Lal Kundan3,Chaudhary Ratiram G.1,Mondal Sudip1ORCID

Affiliation:

1. PG Department of Chemistry, Seth Kesarimal Porwal College of Arts & Science & Commerce, Kamptee, 441001, India

2. Division of Materials Science, Department of Engineering Sciences and Mathematics, Lulea University of Technology, Lulea, Sweden

3. PG Department of Chemistry, VMV Comm., JMT Arts & JJP Sci. College, Wardhaman Nagar, 440 008, Nagpur, India

Abstract

Abstract: Microwave-assisted synthesis is a powerful tool in organic chemistry, providing a rapid and efficient method for the synthesis of bioactive heterocycles. The application of micro-waves significantly reduces reaction times and increases percentage yields with high purity of the final product. To make the synthetic protocol greener, the application of the magnetic nanocata-lyst is a rapidly growing area of interest nowadays. Magnetic nanocatalyst, with its unique fea-tures like magnetic separable facile recovery from the reaction media heterogeneously, makes the overall synthetic strategy cleaner, faster, and cost-effective. Aiming this, in the present review, we will focus on the infusion of Magnetic nanocatalyst to microwave-assisted synthesis of vari-ous classes of azaheterocyclic compounds, including pyridines, pyrimidines, quinolines, and ben-zimidazoles. The synthetic methodologies involved in the preparation of these heterocycles are highlighted, along with their biological activities. Furthermore, in this review, the most recent and advanced strategies to incorporate nanocatalysts in the microwave-assisted synthesis of nat-ural products containing azaheterocyclic moieties in drug discovery programs are elucidated in detail, along with the incoming future scope and challenges.

Publisher

Bentham Science Publishers Ltd.

Subject

General Medicine

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