Narendar Nasani
Centre for Materials for Electronics Technology, University of St Andrews School of Chemistry, Universidade de Aveiro, National Institute of Technology Tiruchirappalli
About
Narendar Nasani has received PhD degree from University of Aveiro, Portugal in 2014 and thesis entitled "Anodes for Protonic Ceramic Fuel Cells". He also attained his Master’s degree in Applied Chemistry with First class from National Institute of Technology-Tiruchirappalli, India. At present, he is a Postdoctoral Researcher in the Nanotechnology Research Division (NRD) of the centre for mechanical technology and automation (TEMA) in the University of Aveiro, Portugal. His current research interests are: Development of Protonic Ceramic Electrochemical devices for carbon rich fuels reforming; proton conducting materials including anodes, electrolytes and cathodes; Nanostructured electrodes.
Employment
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Centre for Materials for Electronics Technology Scientist2018 - Present
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University of St Andrews School of Chemistry Research Fellow2017 - 2018
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Universidade de Aveiro Postdoctoral Researcher2015 - 2017
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University of Hyderabad Junior Research Fellow2009 - 2010
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University of Hyderabad Summer Research Fellow2008 - 2008
Education
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Universidade de Aveiro PhD2010 - 2014
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National Institute of Technology Tiruchirappalli Master of Science in Applied Chemistry2007 - 2009
Projects & Funding
Projects & funding information is unavailable.
Publications (33)
- The effect of nickel doping on the microstructure and conductivity of Ca(Ti,Al)O3–δ for solid oxide fuel cells Save
- Influence of NaF on the ionic conductivity of sodium aluminophosphate glass electrolytes Save
- Unravelling the Effects of Calcium Substitution in BaGd2CoO5 Haldane Gap 1D Material and Its Thermoelectric Performance Save
- Increased performance by use of a mixed conducting buffer layer, terbia-doped ceria, for Nd2NiO4+δ SOFC/SOEC oxygen electrodes Save
- A review on sintering technology of proton conducting BaCeO3-BaZrO3 perovskite oxide materials for Protonic Ceramic Fuel Cells Save
- Chemically transformed additive phases in Mg2TiO4 and MgTiO3 loaded hydrogen storage system MgH2 Save
- Metal Oxide Additives Incorporated Hydrogen Storage Systems: Formation of In Situ Catalysts and Mechanistic Understanding Save
- Solid solution limits and electrical properties of scheelite SryLa1-yNb1-xVxO4-δ materials for x = 0.25 and 0.30 as potential proton conducting ceramic electrolytes Save
- Local mechanical and electromechanical properties of the P(VDF-TrFE)-graphene oxide thin films Save
- Role of chemical interaction between MgH 2 and TiO 2 additive on the hydrogen storage behavior of MgH 2 Save