About
Dr. Nygil Thomas had his school education in Kerala. He did his graduation in Christ College and post-graduation in St Josephs College, Bangalore. He worked in the quality division of Biocon Limited, the largest bio pharmaceutical company in India for two years, three months. He was working in the Human Insulin, Insulin Glargine and Oral Insulin project. Later he joined as a junior research fellow (JRF) in the research department of St Josephs College, Bangalore under the guidance of Dr. Michael Rajamathi. He worked extensively on layered compounds, LDHs and LHSs. Later he became senior research fellow (SRF) in the same group. After completing his PhD, he moved to Fritz-Haber-Institute of the Max-Planck-Society, Berlin for post doctoral research. There he worked with Prof Dr. Robert Schlögl and group leader Prof. Dr. Malte Behrens. He investigated methanol synthesis reaction using Cu/ZnO/Al2O3 catalysts. Later he accepted the position of Assistant Professor in Post Graduate and Research Department of Chemistry, Nirmalagiri College, Kannur, where he is working at present.
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Publications (41)
- BaZrO3 based non enzymatic single component single step ceramic electrochemical sensor for the picomolar detection of dopamine Save
- Electrocatalytic Activity Enhancement Using Graphene-Metal Oxide Nanocomposites for the Ultra Low Level Detection of Biomolecules Save
- Influence of the Amount of Carbon during the Synthesis of LaFe0.8Co0.2O3/Carbon Hybrid Material in Oxygen Evolution Reaction Save
- Pico Molar Sensing of Dopamine in Presence of Serotonin Using BaMnO3/Carbon Nanostructures Save
- A comprehensive review on the recent developments in transition metal-based electrocatalysts for oxygen evolution reaction Save
- A facile electrochemical sensor based on titanium oxide (TiO2)/reduced graphene oxide (RGO) nano composite modified carbon paste electrode for sensitive detection of epinephrine (EP) from ternary mixture Save
- Electrocatalytic sensing of dopamine: How the Co content in porous LaNixCoxO3 perovskite influences sensitivity? Save
- Selective nanomolar electrochemical detection of serotonin, dopamine and tryptophan using TiO2/RGO/CPE – influence of reducing agents Save
- The effect of different GO reduction strategies on the lower level electrochemical determination of Epinephrine and Serotonin in quaternary mixtures Save
- The influence of B-site cation in LaBO3 (B = Fe, Co, Ni) perovskites on the nanomolar sensing of neurotransmitters Save