Dr. Aravind Nesaragi | Synthetic organic chemistry ward | Best Researcher Award

Academician/Research Scholar, .Indian Institute of Technology DharwadIndia, India

๐Ÿ† Dr. Aravind Nesaragi, renowned for his groundbreaking contributions in Synthetic Organic Chemistry, proudly clinches the esteemed Best Researcher Award. As an Academician and Research Scholar at the prestigious Indian Institute of Technology, Dharwad, India, Dr. Nesaragi’s dedication and innovation have propelled the field forward. His pioneering work encompasses the synthesis of novel organic compounds with diverse applications, addressing critical challenges in drug discovery and material science. With an unwavering commitment to excellence, Dr. Nesaragi continues to inspire and shape the future of organic chemistry research, leaving an indelible mark on the scientific community. ๐ŸŒŸ

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Education

๐ŸŽ“ Dr. Aravind Nesaragi boasts an illustrious academic journey marked by accolades and achievements. Graduating with a Ph.D. in Chemistry from Karnatak University, Dharwad, he demonstrated exceptional prowess in synthetic organic chemistry, earning him widespread recognition. Prior to this, he obtained a Master’s degree in Organic Chemistry from Rani Channamma University and pursued a Bachelor’s degree from KRCES College. Dr. Nesaragi’s academic excellence extends to his secondary education, where he consistently excelled. His stellar performance in the Graduate Aptitude Test for Engineering (GATE) further underscores his commitment to academic excellence and research endeavors. ๐ŸŒŸ

Research Interests

๐Ÿ”ฌ Dr. Aravind Nesaragi’s research interests span a diverse array of cutting-edge topics within materials chemistry and optoelectronics. His expertise encompasses fluorescence sensing, OLED applications, nanomaterials, and the synthesis of highly conjugated luminescent molecules. Notably, he delves into the development of nanocatalysts for organic transformations, a pivotal area in catalysis research. Dr. Nesaragi’s contributions extend to device fabrication, including dye-sensitized solar cells (DSSC), supercapacitors, and OLEDs, where his synthesized molecules play a critical role. Through his innovative work, he continues to advance the frontier of optoelectronic materials, paving the way for transformative applications in various industries. ๐ŸŒŸ

Award and Fellowships

๐ŸŽ“ Dr. Aravind Nesaragi’s academic journey was further enriched by his receipt of the prestigious Karnataka Science and Technology Promotion Society Ph.D. Fellowship from 2020 to 2022. This esteemed fellowship not only recognized his exceptional talents but also provided vital support for his doctoral research endeavors. With this fellowship, Dr. Nesaragi was able to delve deeper into his studies, exploring new avenues and making significant contributions to the field of synthetic organic chemistry. Such recognition not only validates his dedication and commitment to scientific inquiry but also underscores his potential to drive impactful advancements in science and technology. ๐ŸŒŸ

Instrumental Skills

๐Ÿ”ฌ Dr. Aravind Nesaragi is equipped with an impressive array of state-of-the-art laboratory instrumentation, empowering his research endeavors in synthetic organic chemistry. Among his arsenal are tools like NMR and GCMS, essential for elucidating molecular structures and analyzing compounds with precision. The utilization of advanced technologies such as Microwave Reactors expedites synthesis processes, while FT-IR (ATR and KBr) spectroscopy enables detailed characterization of functional groups. With equipment like Rotary Evaporators for solvent removal and UV-Visible and Fluorescence Spectrometers for analyzing optical properties, Dr. Nesaragi’s laboratory stands as a hub for innovative research, driving discoveries at the forefront of scientific exploration. ๐Ÿงช

Publication Top Notes

Microwave assisted regioselective synthesis of quinoline appended triazoles as potent anti-tubercular and antifungal agents via copper (I) catalyzed cycloaddition

Published in Bioorganic & Medicinal Chemistry Letters, 2021

Cited by: 32

Green synthesis of therapeutically active 1, 3, 4-oxadiazoles as antioxidants, selective COX-2 inhibitors and their in silico studies

Published in Bioorganic & Medicinal Chemistry Letters, 2021

Cited by: 25

WELPSA: A natural catalyst of alkali and alkaline earth metals for the facile synthesis of tetrahydrobenzo[b]pyrans and pyrano[2,3โ€d]pyrimidinones as inhibitors of โ€ฆ

Published in Applied Organometallic Chemistry, 2022

Cited by: 24

Click chemistry based regioselective oneโ€pot synthesis of coumarinโ€3โ€ylโ€methylโ€1,2,3โ€triazolylโ€1,2,4โ€triazolโ€3(4H)โ€ones as newer potent antitubercular agents

Published in Archiv der Pharmazie, 2019

Cited by: 22

Synthesis, X-ray characterization, DFT studies and Hirshfeld surface analysis of new organic single crystal: 2-(4-Methoxyphenyl)-4-{[2′-(1H-tetrazol-5-yl) biphenyl-4-yl] methyl โ€ฆ

Published in Journal of Molecular Structure, 2019

Cited by: 18

Chitosanโ€ZnO: An Efficient and Recyclable Polymer Incorporated Hybrid Nanocatalyst to Synthesize Tetrahydrobenzo[b]pyrans and Pyrano[2,3โ€d]pyrimidinones โ€ฆ

Published in ChemistrySelect, 2022

Cited by: 11

Microwave facilitated one-pot three component synthesis of coumarin-benzoxazole clubbed 1, 2, 3-triazoles: Antimicrobial evaluation, molecular docking and in silico ADME studies

Published in Synthetic Communications, 2021

Cited by: 11

Coumarin triazoles as potential antimicrobial agents

Published in Antibiotics, 2023

Cited by: 10

L-proline catalyzed multicomponent domino reaction in polyethyleneglycol-400 for regioselective synthesis of pyrazolyl-tetrahydroindazolones under microwave irradiation

Published in Synthetic Communications, 2019

Cited by: 10

Cu microcrystals garnished with copper nanoparticles catalyzed oneโ€pot facile synthesis of novel 1, 2, 3โ€triazoles via click chemistry as antifungal agents

Published in Applied Organometallic Chemistry, 2022

Cited by: 7

Dr. Aravind Nesaragi | Synthetic organic chemistry ward | Best Researcher Award-1730

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