Prof. Rajeev Gupta
University of Delhi, The University of Kansas, Indian Institute of Technology Kanpur
About
Prof. Rajeev Gupta obtained his PhD from IIT Kanpur (India) and did his Postdoctoral work at the University of Kansas (USA). He joined the University of Delhi in 2003 and working as a Professor since 2009 and Senior Professor since 2019. Prof. Gupta's research interests are in the area of Coordination and Supramolecular Chemistry with focus on architectural aspects, catalysis, photocatalysis and sensing. He has published extensively and his work has been widely cited. So far, 20 students have obtained their PhDs under the supervision of Prof. Gupta.
Employment
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University of Delhi Professor2003 - Present
Education
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The University of Kansas Post-doc2000 - 2003
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Indian Institute of Technology Kanpur PhD1995 - 2000
Projects & Funding
Projects & funding information is unavailable.
Publications (58)
- Visible light driven hydrogen bonding assisted complete photocatalytic degradation of selected antibiotics by lanthanide-based metal–organic frameworks Save
- Amalgamated hydrophobicity- and hydrophilicity-tuned unprecedented H-bonding-assisted phase-transfer catalysis by zinc-based MOFs Save
- Lanthanide-based metallogels with tunable luminescence: nanomolar detection of a nerve agent simulant and anticounterfeiting applications Save
- Acceptorless oxidant-free dehydrogenation of amines catalyzed by Ru–hydride complexes of amide-acid/ester ligands Save
- Lanthanide‐Based Metal–Organic Frameworks Offering Hydrogen Bonding Cavities: Luminescent Characteristics and Sensing Applications Save
- Unprecedented Hydrogen Evolution Reactions Based on the Accelerating Effect of [Co–Tb]-Supramolecular Complex-Anchored CdS Heterojunctions Save
- Visible Light Catalyzed Oxidative Reactions Using Silver-Based Metal–Organic Frameworks Based on Metalloligands Save
- Fe2+ Doping in Antiferromagnetic CsNiCl3 Triggers a Spin Glass Effect, Enhances its Optical and Electrochemical Properties Save
- Transfer Hydrogenation Catalyzed by a Bifunctional Cobalt‐Based Supramolecular Complex Offering Hydrogen Bonding Cavities Save
- Substituent effect on discriminative detection of Mg2+ and Zn2+ ions by two related coumarin-based chemosensors Save