N. Clament Sagaya Selvam
SRM Institute of Science and Technology, Binghamton University, University of Madras, Loyola College, Sungkyunkwan University - Natural Sciences Campus, Pondicherry University
About
N. Clament Sagaya Selvam obtained his M.Sc. (2009) and Ph.D. (2014) degrees from the Department of Chemistry, Loyola College, University of Madras, India. He is currently working as a senior postdoctoral associate in the Department of Chemistry, at Binghamton University (SUNY), New York, USA. His research interests include the design/synthesis/engineering of electrocatalysts for energy conversion reactions (water electrolyzer and fuel cell applications)
Employment
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SRM Institute of Science and Technology Research Assistant Professor2023 - Present
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Binghamton University Senior postdoctoral associate2022 - Present
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Sungkyunkwan University - Natural Sciences Campus postdoctoral associate2018 - 2022
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Kyungpook National University Postdoctoral associate2015 - 2016
Education
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University of Madras PhD2010 - 2014
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Loyola College Maters in Chemistry2007 - 2009
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Pondicherry University B.ED2006 - 2007
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Bharathidasan University B.Sc2003 - 2006
Projects & Funding
Projects & funding information is unavailable.
Publications (31)
- Patchwork-Structured Heterointerface of 1T-WS2/a-WO3 with Sustained Hydrogen Spillover as a Highly Efficient Hydrogen Evolution Reaction Electrocatalyst Save
- Self-Assembly of Hausmannite Mn3O4 Triangular Structures on Cocosin Protein Scaffolds for High Energy Density Symmetric Supercapacitor Application Save
- Re nanoclusters anchored on nanosheet supports: Formation of Re-O-matrix bonding and evaluation as all-pH-range hydrogen evolution reaction (HER) electrocatalysts Save
- Unveiling the Impact of Fe Incorporation on Intrinsic Performance of Reconstructed Water Oxidation Electrocatalyst Save
- Chemical transformation approach for high-performance ternary NiFeCo metal compound-based water splitting electrodes Save
- Facile microwave synthesis of cerium oxide@molybdenum di-sulphide@reduced graphene oxide ternary composites as high performance supercapacitor electrode Save
- Synthetic disposable material derived-carbon supported NiO: Efficient hybrid electrocatalyst for water oxidation process Save
- Kirkendall effect induced bifunctional hybrid electrocatalyst (Co9S8@MoS2/N-doped hollow carbon) for high performance overall water splitting Save
- Reconstructed Water Oxidation Electrocatalysts: The Impact of Surface Dynamics on Intrinsic Activities Save
- Perpendicularly anchored ReSe2 nanoflakes on reduced graphene oxide support for highly efficient hydrogen evolution reactions Save