SA
Sreekanth Anandaram
National Institute of Technology Tiruchirappalli, Cochin University of Science and Technology
About
Associate Professor
Department of Chemistry, NIT Trichy
Our research group is focusing on the following areas;
Coordination Chemistry of Transition metals & Lanthanides
DNA Binding and Biological Studies of Metal Complexes
Organometallic Chemistry of Thoio/Selenosemi carbazones
TD-DFT Studies and molecular docking
Corrosion Chemistry & Engineering
Chemosensing
Employment
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National Institute of Technology Tiruchirappalli Associate Professor2018 - Present
Education
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Cochin University of Science and Technology Ph.D.2000 - 2005
Projects & Funding
Projects & funding information is unavailable.
Publications (88)
- Pilot Study on the Visualization of Latent Fingerprints and Naked Eye Detection of Hg2+ and Zn2+ Ions in Aqueous Media Using Ninhydrin-Based Thiosemicarbazone Save
- Reinforced corrosion resistance of mild steel in acidic medium by bis(2-acetylpyridine)dithiosemicarbazone (DTSc): electrochemical, surface and spectroscopic studies Save
- Synthesis and characterization of N4-substituted thiosemicarbazones: DNA/BSA binding, molecular docking, anticancer activity, ADME study and computational investigations Save
- Synthesis, spectroscopic characterizations, single crystal X-ray analysis, DFT calculations, in vitro biological evaluation and in silico evaluation studies of thiosemicarbazones based 1,3,4-thiadiazoles Save
- Thiophene anchored two new sets of carbohydrazide for the chemosensing and biological investigation Save
- A “turn-on” fluorescent chemosensor for the meticulous detection of gallium (III) ion and its use in live cell imaging, logic gates and keypad locks Save
- Investigation on DNA/Protein interaction of thiosemicarbazone based octahedral nickel(II) and iron(III) complexes Save
- Simple Fluorescence Sensing Approach for Selective Detection of Fe3+Ions: Live-Cell Imaging and Logic Gate Functioning Save
- Development of Thiophene Spacer Carbohydrazide Probes for Chemosensing and Biological Investigation Save
- An effective selenium-based fluorescence chemosensor for selective recognition of Hg2+ in aqueous medium: experimental and theoretical studies Save