BG
Bappaditya Goswami
Texas Tech University, University of Rochester, Indian Institute of Science Education and Research Kolkata, Pondicherry University
Employment
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Texas Tech University Postdoctoral Research Associate2026 - Present
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University of Rochester Postdoctoral Associate2024 - 2026
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Indian Institute of Science Education and Research Kolkata Project Assistant2015 - 2017
Education
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Indian Institute of Science Education and Research Kolkata PhD2017 - 2023
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Pondicherry University MSc2013 - 2015
Projects & Funding
Projects & funding information is unavailable.
Publications (21)
- Redox non-innocent tridentate pyrazole-pyridine azo ligands and their Cu(I/II) complexes: Electrochemistry, alcohol oxidation catalysis, and alcohol oxidation triggered synthesis of quinolines Save
- Chromium complexes of imidazole functionalized pincer like azo aromatic ligands: synthesis, characterization, and their alcohol dehydrogenation triggered catalytic C-N coupling of amines Save
- Chromium and Manganese Complexes of Pincer‐Like Azo‐Amine Ligands: Synthesis, Characterization, and their Catalytic CC Bond Formation Reaction with Fluorenes and Alcohols Save
- Amine‐Templated N,O‐Linked Co(II)‐MOF with hxl Topology for “Turn‐On” Detection of Tumor Biomarker GSH and Industrial Toxicant HCHO: A Dual‐Target Approach Save
- Fixation of CO2 with Epoxides Catalyzed by Pincer-Type Azo-Aromatic Complexes of Cobalt as Catalysts Save
- A Phosphine-Oxide Cobalt(II) Complex and Its Catalytic Activity Studies toward Alcohol Dehydrogenation Triggered Direct Synthesis of Imines and Quinolines Save
- Ligand redox controlled amine dehydrogenation and imine hemilability in singlet diradical azo-aromatic Ni(ii) complexes: characterization of the electron transfer series of azo-imine complexes of Ni(ii) Save
- Alcohol Dehydrogenation-Triggered Selective C3-Alkylation of Indoles by Homogeneous Azo-aromatic Cobalt Catalysts Save
- Amine Functionalized Pincer-like Azo-aromatic Complexes of Cobalt and Their Catalytic Activities in the Synthesis of Quinoline via Acceptorless Dehydrogenation of Alcohols Save
- Completely o-Phenylene Bridged N4-Cyclophane: A Missing Link in the Phenylene Bridge N4-Cyclophane Family Save