SK
sriraghavan kamaraj
Vellore Institute of Technology University, Stony Brook University, University of Nebraska Medical Center, University of Madras, University of Nebraska Medical Center College of Pharmacy
Employment
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Vellore Institute of Technology University professor2012 - Present
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Stony Brook University National Cancer Research Institute-Research Associate2011 - 2012
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University of Nebraska Medical Center College of Pharmacy Postdoctoral Researcher and Research Associate2002 - 2011
Education
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University of Nebraska Medical Center Postdoctoral Research2002 - 2011
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University of Madras Doctor of Philosophy1992 - 2001
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Presidency College Master degree in Chemistry1988 - 1990
Projects & Funding
Projects & funding information is unavailable.
Publications (41)
- High-yielding regioselective synthesis of p-quinone fused 5-substituted-1,4-benzodiazepine scaffolds via Pictet–Spengler type cycloannulation Save
- Direct Access to Quinone-Fused 5-Substituted-1,4-Benzodiazepine Scaffolds from Azidoquinones with/without [1,2]-Azide-Nitrogen Migration: Mechanistic Insights Save
- Exploring imidazo[4,5- g ]quinoline-4,9-dione derivatives as Acinetobacter baumannii efflux pump inhibitor: an in silico approach Save
- Metabolic, Pharmacokinetic, and Activity Profile of the Liver Stage Antimalarial (RC-12) Save
- A prototype device of microliter volume voltammetric pH sensor based on carbazole-quinone redox-probe tethered MWCNT modified three-in-one screen-printed electrode Save
- Cytochrome P450-Mediated Metabolism and CYP Inhibition for the Synthetic Peroxide Antimalarial OZ439 Save
- Structure-Activity Relationship of Antischistosomal Ozonide Carboxylic Acids Save
- Structure-Activity Relationship of the Antimalarial Ozonide Artefenomel (OZ439) Save
- Electrochemical immobilization of ellagic acid phytochemical on MWCNT modified glassy carbon electrode surface and its efficient hydrazine electrocatalytic activity in neutral pH Save
- An unusual electrochemical reductive cleavage of azo dye into highly redox active copolymeric aniline derivatives on a MWCNT modified electrode surface at neutral pH and its electroanalytical features Save