Milind M. Deshmukh
University of Delhi, Dr. Harisingh Gour Vishwavidyalay, North Maharashtra University, Kyoto University
About
Milind Deshmukh was born in 1978 and received B.Sc. (Chemistry) from North Maharashtra University, Jalgoan. M.Sc. in Physical Chemistry from the University of Pune. He performed his doctoral research under supervision of Professor Shridhar R. Gadre for obtaining Ph.D. degree in 2008 from University of Pune, India. He spent 2008-2010 as Postdoctoral Fellow in Tata Institute for Fundamental Reserach (HBCSE-TIFR), Mumbai. He worked as a Specially Promoted Post-Doctoral Researcher (2010-2013) in the group of Professor Shigeyoshi Sakaki at Fukui Institute for Fundamental Chemistry, Kyoto University, Japan. In 2013, he joined as Assistant Professor at the Department of Chemistry, Dr. Harisingh Gour University Sagar, India and started independent research career. Currently, He is an Associate Professor in the Department of Chemistry, University of Delhi, Delhi. His research interests are focuses on Development of Quantum Mechanical Methods for treatment of non-covalent interactions, Mechanism of Metal Catalyzed Transformation, Small Molecule activation by Metal Catalyst, and Organometallics.
Employment
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University of Delhi Associate Professor2025 - Present
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Dr. Harisingh Gour Vishwavidyalay Assistant Professor2013 - Present
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Kyoto University Specially promoted Postdoctoral Research Fellow2010 - 2013
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Homi Bhabha Centre for Science Education Postdoctoral Research Fellow (Visiting Fellow)2008 - 2010
Education
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North Maharashtra University B.Sc.1996 - 1999
Projects & Funding
Projects & funding information is unavailable.
Publications (61)
- Sodium borohydride: repurposing from a reducing agent to a reductive cyclization reagent for N-(2-iodoaryl)acrylamides Save
- Hydrogen Bond Energy Estimation in Large Molecular Clusters via the Method of Synergistic Cyclic Cooperativity: A Software Update H‐BEE 2.0 Save
- Energetics of Tetrel, Pnicogen, and Hydrogen Bonds in Microhydrated Clusters of CO2 and N2O Save
- Two‐Step Hybrid Method for the Energetics of Individual Noncovalent Interactions in Molecular Crystals Save
- Appraisal of the Fragments‐In‐Fragments Method for the Energetics of Individual Hydrogen Bonds in Molecular Crystals Save
- Cyclic cooperativity contributions determine the hydrogen bond strengths in molecular clusters Save
- Synergistic cyclic cooperativity governs the strength of chalcogen, pnictogen and tetrel bonds in microhydrated clusters Save
- Hydrogen bond energy estimation (H‐BEE) in large molecular clusters: A Python program for quantum chemical investigations Save
- On the synergetic effects of cyclic cooperativity in water clusters Save
- Hydrogen bond strengths in microhydrated clusters of HNO and HONO: energetic insights via a molecular tailoring approach Save