DR
Sathish Reddy
REVA University, Jinan University, Kuvempu University, Peking University
About
Preparation of Nanomaterials and Characterization
Preparation of Nanomaterial-based electrochemical sensor for detection of bioactive molecules, toxic molecules..., etc.
Preparation of nanomaterial-based electrocatalyst for energy conversion.
Preparation of bionanomaterial for neural interfaces.
Electrochemical studies for chemicals.
Employment
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REVA University Asisstant Professor2019 - Present
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Jinan University Post-Doctorate2016 - 2019
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Peking University Post-Doctorate2013 - 2016
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Bharathi Academy of Higher Education Asisstant Professor2012 - 2013
Education
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Kuvempu University PhD2009 - 2013
Projects & Funding
Projects & funding information is unavailable.
Publications (94)
- An effective sensing platform of graphite-based Zr-CdFe2O4 nanoparticle for electrochemical sensing of heavy metal Pb2+ ions and Sunlight-induced photo-degradation activity Save
- Fmoc-Phe-oPDA/Zr-MOF Coated Carbon Fiber for Electrochemical Detection of Chloramphenicol and Furazolidone Residues in Food Samples Save
- Electrochemical detection and photocatalytic degradation of methylene blue using high surface area manganese dioxide nanostructures Save
- Cost-Effective Tulasi Extract Synthesis of Spinel Ag-NiFe2O4 NPs: Its Enhanced Electrochemical Mercury (Hg+) Spotting and Photo-Dye Degradation Applications Save
- CuO/NiO/MWCNT-modified electrode for simultaneous neurotransmitter detection and energy storage for self-powered biosensors Save
- A Hybrid Zr-MOF/CNT/Nanocellulose Electrochemical Sensor for Dual Detection of Furazolidone and Chloramphenicol in Food Samples Save
- Electrochemical sensitive detection of green-mediated Ag-CdFe2O4 NPs against lithium ion with 4-hydroxyacetanilide and sunlight driven photocatalytic activity Save
- Fmoc-Pro-Phe-OMe dipeptide carbon sensor for simultaneous detection of chloramphenicol (CP) and furazolidone (FZ) toxic residues in food samples Save
- Graphene Oxide/CuO/ZnO Nanocomposite Combined Carbon Fibers as a Sensor for the Determination of Antibiotic Chloramphenicol Save
- Materials, Design Principles, and Need for 3D-Printed Electrochemical Sensors for Monitoring Toxicity Save