About
Dr. Kota Sathish was born in Warangal, India. He completed MSc in Chemistry from Kakatiya University Warangal in 2014 and received a Ph.D. Degree in 2021 from National Institute of Technology, Warangal under the supervision of Prof. D. Kashinath. Subsequently, he worked as a Senior Research Associate at Curia Global and Aragen Life Sciences, Hyderabad. Currently, he is an ANRF (DST-SERB)-National Postdoctoral fellow in Dr M. Ramu Yadav's research group in the Department of Chemistry, Indian Institute of Technology, Delhi. His research mainly focuses on gem-difluoroallenes (DFA) and their synthetic transformations in organic synthesis.
Employment
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Curia Global (Formerly AMRI) Senior Research Associate2021 - Present
Education
Education history is unavailable.
Projects & Funding
Projects & funding information is unavailable.
Publications (16)
- Solvent directed base-enabled diastereodivergent domino cycloaddition of isoxazole–oxindole styrenes and Michael additions of isoxazole–styrenes with vinyl malononitriles Save
- Stereoselective Fluoro-Deuteration/Chalcogenation/Halogenation of gem-Difluoroallenes (DFAs) Save
- gem-Difluoroallene (DFA): an emerging versatile synthetic precursor to enable diverse fluorinated molecules Save
- A simple and effective Lewis acid assisted synthesis of indole-3-sulfonyl carbamates and sulfonamides using Burgess reagent Save
- Metal-free, one-pot synthesis of 2-styrylquinolines via Friedländer annulation and sp 3 C–H activation using 1, 3-dimethylurea and l-tartaric acid (3: 1) as a deep eutectic solvent Save
- Synthesis of 2-styryl-quinazoline and 3-styryl-quinoxaline based sulfonate esters via sp 3 C–H activation and their evaluation for α-glucosidase inhibition Save
- Applications of 3,5‐Dialkyl‐4‐nitroisoxazoles and Their Derivatives in Organic Synthesis# Save
- Synthesis of 4H-chromene-isoxazole hybrids via ortho-hydroxy directing cyclization of isoxazole-styrenes and Michael addition of imino-chromenes in aqueous medium Save
- Synthesis of Spiro Pyrazolone-Oxindole and Bicyclic Pyrazolone Derivatives via Solvent-Dependent Regioselective Aza-1,4/1,6-Michael and Intramolecular Cycloaddition under Catalyst-Free Conditions Save
- Dimethylurea/L-tartaric acid as deep eutectic solvent for one-pot synthesis of 2-(methylamino)-3-nitrospiro-[chromene] and N-methyl-3-nitro-4H chromen-2-amines Save