TK
Employment
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Indian Institute of Technology Bhubaneswar Associate Professor2022 - Present
Education
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University of Mumbai Ph.D.2003 - 2008
Projects & Funding
Projects & funding information is unavailable.
Publications (29)
- Unified Photoredox Platform for Divergent SO2-Capture Transformations: Substrate-Controlled Switch toward 1,4-HAT-Enabled 1,2-Hydrosulfonylation or 1,2-Sulfonylative Spirolactamization Save
- Cover Feature: Entry to Sulfonylated Phenanthridines via Strained Cyclic Alcohol/Thianthrenium Salt‐Derived Radicals and SO2‐Capture under Visible‐Light Photoredox Catalysis (ChemPhotoChem 2/2026) Save
- Entry to Sulfonylated Phenanthridines via Strained Cyclic Alcohol/Thianthrenium Salt‐Derived Radicals and SO2‐Capture under Visible‐Light Photoredox Catalysis Save
- A Divergent Chiral-Pool Strategy for the Asymmetric Synthesis of Iridoid Monoterpenoids and the (+)-Dioxa-[5.5.5.6] Fenestrane Core of Asperaculin A Save
- 1,2‐Sulfonylative‐Arylation of Acrylamides via Strain‐Release‐/Aromaticity‐Driven Radical Generation and SO2‐Capture under Photoredox Catalysis to Access S(VI)‐Oxindoles Save
- Front Cover: 1,2‐Sulfonylative‐Arylation of Acrylamides via Strain‐Release‐/Aromaticity‐Driven Radical Generation and SO2‐Capture under Photoredox Catalysis to Access S(VI)‐Oxindoles (Eur. J. Org. Chem. 47/2025) Save
- Entry to Sulfonylated Phenanthridines via Strained Cyclic Alcohol/Thianthrenium Salt-Derived Radicals and SO2-capture under Visible-light Photoredox Catalysis Save
- 1,6-Hydrosulfonylation of para-Quinone Methides Enabled via Strain Release-/Aromaticity-Driven Alkyl Radical Generation and SO2-Capture: Synthesis, Computational and Antiproliferative Activity of Sulfonylated Diarylmethanes Save
- Strain-Release-/Aromaticity-Driven Radical Generation and SO2-Capture Enables Acrylamides Bisfunctionalization via Photoredox Catalysis: Synthesis of S(VI) Functionalized Oxindoles Save
- 1,6-Hydrosulfonylation of p-quinone methides enabled via strain-release-/aromaticity-driven alkyl radical generation and SO2-capture: synthesis and antiproliferative studies of sulfonylated diarylmethanes Save