The Catalysts-Based Synthetic Approaches to Quinolines: A Review

Author:

Tripathi Shrishti1,Kumar Rajnish2ORCID,Mazumder Avijit2,Salahuddin 3,Kukreti Neelima4,Kumar Arvind5,Singh Saurabh6

Affiliation:

1. Department of Pharmaceutical University, Noida Institute of Engineering and Technology (Pharmacy Institute), Greater Noida, 201310, India

2. Department of Pharmaceutical University, Noida Institute of Engineering and Technology (Pharmacy Institute), Greater Noida, 201310, India

3. Noida Institute of Engineering and Technology (Pharmacy Institute), Greater Noida-201310, India

4. School of Pharmacy, Graphic Era Hill University, Dehradun, India

5. Department of Biotechnology, Noida Institute of Engineering and Technology, Greater Noida, India

6. School of Pharmaceutical Science, Lovely Professional University, Phagwara, India

Abstract

Abstract: The most common heterocyclic aromatic molecule with potential uses in industry and medicine is quinoline. Its chemical formula is C9H7N, and it has a distinctive double-ring structure with a pyridine moiety fused with a benzene ring. Various synthetic approaches synthesize quinoline derivatives. These approaches include solvent-free synthetic approach, mechanochemistry, ultrasonic, photolytic synthetic approach, and microwave and catalytic synthetic approaches. One of the important synthetic approaches is a catalyst-based synthetic approach in which different catalysts are used such as silver-based catalysts, titanium-based nanoparticle catalysts, new iridium catalysts, barium-based catalysts, iron-based catalysts, gold-based catalysts, nickel-based catalyst, some metal-based photocatalyst, α-amylase biocatalyst, by using multifunctional metal-organic framework-metal nanoparticle tandem catalyst etc. In the present study, we summarized different catalyst-promoted reactions that have been reported for the synthesis of quinoline. Hopefully, the study will be helpful for the researchers.

Publisher

Bentham Science Publishers Ltd.

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