Sustainable Synthesis of Phenazines: A Review of Green Approaches

Author:

Shah Drashti1,Bambharoliya Tushar2,Patel Dharti1,Patel Krina1,Patel Niyati1,Nagani Afzal3,Bhavsar Vashisth4,Mahavar Anjali5,Patel Ashish1ORCID

Affiliation:

1. Department of Pharmaceutical Chemistry, Ramanbhai Patel College of Pharmacy, Charotar University of Science and Technology, CHARUSAT, Campus, Changa, 388421, Anand, Gujarat, India

2. Department of Fibre and Polymer Science, North Carolina State University, Raleigh, North Carolina, USA

3. Department of Pharmaceutical Chemistry, Parul Institute of Pharmacy, Parul University, Vadodara, 390019, Gujarat, India

4. Department of Pharmacology, Faculty of Pharmacy, Dharmsinh Desai University, Nadiad, India

5. Department of Computer Science, Chandaben Mohanbhai Patel Institute of Computer Application, Charotar University of Science and Technology, CHARUSAT, Campus, Changa, 388421, Anand, Gujarat, India

Abstract

Abstract: Owing to its momentous significance in the development of new medications, phenazine, and its analogues are successful heterocyclic scaffolds as well as essential building blocks for developing physiologically active chemicals. Traditionally, phenazine and its derivatives have been synthesized using chemical methods that involve toxic organic solvents, dangerous reagents, and the risk of hazardous metal contamination in the final products. These drawbacks have significantly limited the widespread application of phenazine derivatives in therapeutic treatments and the pharmaceutical industry. Consequently, there is a growing demand for environmentally friendly methods that can address these challenges with less environmental damage. As a result, it is now possible to employ green and highly efficient methods for the synthesis of phenazine and its derivatives. These methods include mechanosynthesis, solvent-free and catalyst-free synthesis, green solventbased synthesis, ultrasound-assisted synthesis, microwave-assisted synthesis, and other similar approaches. In light of the fact that the phenazine backbone is a widely present biologically active component and the growing need to decrease the use of hazardous solvents, catalysts, and energy, this review has provided a summary of various sustainable and facile synthetic strategies of phenazine derivatives.

Publisher

Bentham Science Publishers Ltd.

Subject

Organic Chemistry

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