Insights into 4,4′‐Arylmethylene‐Bis‐1H‐Pyrazol‐5‐Ols Scaffolds: Various Synthetic Routes and Their Applications

Author:

Kanagare Anant B.1,Yadav M.Sc.Ashok R.1,Katariya Ashishkumar P.2,Bhagat Devidas S.3,Dhas Ajit K.1,Pansare Dattatraya N.1,Nagwade Pratik A.4,Kumar Brajesh5,Sangshetti Jaiprakash N.6,Deshmukh Satish U.1ORCID

Affiliation:

1. Department of Chemistry Deogiri College Aurangabad. 431005 Maharashtra India

2. Department of Chemistry SAJVPM'S Smt. S. K. Gandhi Arts, Amolak Science & P. H. Gandhi Commerce College Kada, 414202 Beed Maharashtra India

3. Department of Forensic Chemistry and Toxicology Government Institute of Forensic Science Aurangabad 431004 Maharashtra India

4. Department of Chemistry Shri Anand College Pathardi 414102 Maharashtra India

5. Department of Chemistry TATA College, bypass road Chaibasa Jharkhand 833202 India

6. Y. B. Chavhan College of Pharmacy Dr. Raphik Zakaria Campus Aurangabad. MS 431001 India

Abstract

AbstractPyrazole and its derivatives have grown in prominence over the past three decades due to their remarkable therapeutic effects and robust pharmacological potency. This review exclusively focused on synthesis of 4,4’‐arylmethylene‐bis‐1H‐pyrazol‐5‐ols scaffolds owing to their diversified applications along with C−C multiple bond formations in a one step. Last twenty years, more than ninety synthetic methodologies have been developed because of these motifs′ advanced applicability, which prompted researchers to study this molecule. We focused on this synthesis advancement till the last quarter of the year 2022 which summarizes all results of MCRs obtained in conventional and non‐conventional media. It will serve as a key role for synthetic organic chemists working in this field.

Publisher

Wiley

Subject

General Chemistry

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