SP
Sourabh Pal
Jadavpur University, Council of Scientific & Industrial Research, Ramakrishna Mission Vivekananda Centenary College, St. Paul's Cathedral Mission College, University of Calcutta
About
I am actively studying transition-metal complexes with pincer-type ligands, with a strong focus on organometallic structures and reactions. My primary interest lies in photocatalytic substrate activation through ligand-to-metal charge transfer, which I believe is key to advancing this field.
Employment
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Council of Scientific & Industrial Research Project Associate-I2022 - 2024
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Jadavpur University PhD Student
Education
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Ramakrishna Mission Vivekananda Centenary College M. Sc.2018 - 2020
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St. Paul's Cathedral Mission College, University of Calcutta B. Sc.2015 - 2018
Projects & Funding
Projects & funding information is unavailable.
Publications (10)
- Redox‐Active Bis(arylimino)acenaphthene‐Catalyzed Dehydrogenative Aerial Functionalization of Alcohols to N‐Heterocycles Under Exposure of Visible Light Save
- Synergistic effect of ZnO–ZnFe2O4 heterostructures for enhanced surface catalytic activity in Cr(<scp>vi</scp>) reduction, green H2 generation and CO sensing: an experimental study supported by DFT Save
- Dual Active Site Mediated Photocatalytic H2 Evolution through Water Splitting Using CeO2/PPy/BFO Double Heterojunction Catalyst Save
- Review and Outlooks on Electron Migration and Structural Modulation of Metal–Organic Frameworks for Sustainable Fuel Generation Save
- Metal oxide nanocrystals embedded polypyrrole nanohybrid: Exploring role of interface in photocatalytic hydrogen generation Save
- Z-Scheme Heterostructures Using Band-Gap-Tunable ZnO by Metal Doping and Coupling with Polypyrrole for Enhanced Photocatalytic Water Splitting Save
- Structural characterization and photoelectrochemistry of coordination polymer of Pb(II)‐naphthyl‐isonicotinohydrazide Schiff base Save
- Role of Efficient Charge Transfer at the Interface between Mixed-Phase Copper-Cuprous Oxide and Conducting Polymer Nanostructures for Photocatalytic Water Splitting Save
- Phosphorus based hybrid materials for green fuel generation Save
- Effect of metal doping in Bi2WO6 micro-flowers for enhanced photoelectrochemical water splitting Save