EventsThe 28th International Electronic Conference on Synthetic Organic Chemistry
Published
This submission belongs to the session S1. General Organic Synthesis of the event The 28th International Electronic Conference on Synthetic Organic Chemistry
Published date
14 Nov, 2024
Academic Editor
author-avatarJulio A. Seijas
Citation
Dr. Asha Kishorbhai Joshi, Dr. Dipak Manilal Purohit, Synthesis, Spectral studies and Antimicrobic activity of 2-Aryl-3-(2’-n-butyl-4’-chloro-1’-H-imidazol-5’-yl)-quinoxazolines., in Proceedings of The 28th International Electronic Conference on Synthetic Organic Chemistry, 15 November–30 November 2024, MDPI: Basel, Switzerland, doi: 10.3390/ecsoc-28-20100
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Synthesis, Spectral studies and Antimicrobic activity of 2-Aryl-3-(2’-n-butyl-4’-chloro-1’-H-imidazol-5’-yl)-quinoxazolines.

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1. Department of Chemistry, Krishna School of Science Drs. Kiran and Pallavi Patel Global University, Vadodara-391240, Gujarat, (India), India
2. Department of Chemistry, Shree M and N Virani Science College, Saurashtra University, Rajkot-(360005), Gujarat, India, India
Abstract

Quinoxazoline derivatives are renowned for their extensive pharmacological activities and substantial industrial importance. Recognizing their multifaceted applications, this study aims to synthesize novel quinoxazoline derivatives, specifically 2-Aryl-3-(2’-n-butyl-4’-chloro-1’-H-imidazol-5’-yl)-quinoxazolines, and investigate their antimicrobial properties. The synthesis process involved the condensation of a precursor molecule (Type II) with bromine (Br₂) in acetic acid (HAc) and 1,2-diaminobenzene, resulting in the formation of the desired quinoxazoline derivatives (Type III).

The structural elucidation of the synthesized compounds was carried out using a combination of spectroscopic techniques, including Nuclear Magnetic Resonance (NMR), Infrared (IR) spectroscopy, and Mass Spectrometry (MS), which confirmed the successful formation of the targeted molecules. The antimicrobial efficacy of these new derivatives was evaluated through a series of bioassays against a diverse panel of bacterial and fungal strains.

Preliminary results indicate that these quinoxazoline derivatives exhibit significant antimicrobial activity, demonstrating potential as effective agents in combating microbial infections. This research expands the library of quinoxazoline-based compounds and highlights their possible application in developing new antimicrobial therapies.

The findings underscore the versatility and importance of quinoxazoline derivatives in medicinal chemistry, offering insights into their broader applications. This study lays the groundwork for further exploration and optimization of quinoxazoline-based molecules, aiming to enhance their efficacy and broaden their industrial and pharmaceutical applications.

Keywords
Quinoxazoline derivatives
synthesis
antimicrobial activity
condensation reaction
2-Aryl-3-(2’-n-butyl-4’-chloro-1’-H-imidazol-5’-yl)-quinoxazolines
spectroscopic characterization
medicinal chemistry
pharmaceutical applications
Manuscript
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