Jean Hamelin

Physical Measurements Lab National Instittute of Standards and Technology 
 Materials Science and Energy Institut national de la recherche scientifique 
"Jean Hamelin"
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Shahgaldi S, Hamelin J. (2015) Stability study of ultra-low Pt thin film on TiO2–C core–shell structure and TiO2 encapsulated in carbon nanospheres as cathode catalyst in PEMFC Fuel. 150: 645-655
Shahgaldi S, Hamelin J. (2015) The effect of low platinum loading on the efficiency of PEMFC’s electrocatalysts supported on TiO2–Nb, and SnO2–Nb: An experimental comparison between active and stable conditions Energy Conversion and Management. 103: 681-690
Shahgaldi S, Hamelin J. (2015) Improved carbon nanostructures as a novel catalyst support in the cathode side of PEMFC: a critical review Carbon. 94: 705-728
Fofana D, Natarajan SK, Hamelin J, et al. (2014) Low platinum, high limiting current density of the PEMFC (proton exchange membrane fuel cell) based on multilayer cathode catalyst approach Energy. 64: 398-403
Fofana D, Natarajan SK, Bénard P, et al. (2013) High Performance PEM Fuel Cell with Low Platinum Loading at the Cathode Using Magnetron Sputter Deposition International Scholarly Research Notices. 2013: 1-6
Fofana D, Hamelin J, Bénard P. (2013) Modelling and experimental validation of high performance low platinum multilayer cathode for polymer electrolyte membrane fuel cells (PEMFCs) International Journal of Hydrogen Energy. 38: 10050-10062
Natarajan SK, Hamelin J. (2010) High-performance anode for Polymer Electrolyte Membrane Fuel Cells by multiple-layer Pt sputter deposition Journal of Power Sources. 195: 7574-7577
Natarajan SK, Hamelin J. (2009) Electrochemical Durability of Carbon Nanostructures as Catalyst Support for PEMFCs Journal of the Electrochemical Society. 156
Natarajan SK, Cossement D, Hamelin J. (2007) Synthesis and Characterization of Carbon Nanostructures as Catalyst Support for PEMFCs Journal of the Electrochemical Society. 154
Natarajan SK, Hamelin J. (2007) Homogeneous platinum deposition on chemically modified carbon nanostructures as catalysts for PEMFCs Electrochimica Acta. 52: 3751-3757
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