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The Inhibition of Electrochemical Carbon Corrosion in Polymer Electrolyte Membrane Fuel Celis Using Iridium Nanodendrites by
  • Oh, Jeong-Hwan
  • Lee, Woong Hee
  • Kim, Hansung
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Non-Conductive Tio2 AsAnode Catalyst Support for Pem Water Electrolysis by
  • Mazur, Petr
  • Polonsky, Jakub
  • Paidar, Martin
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Development and Performance Evaluation of Proton Exchange Membrane (Pem) Based Hydrogen Generator for Portable Applications by
  • Balaji, Rengarajan
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
High-Pressure Pem Water Electrolysis and Corresponding Safety Issues by
  • Grigoriev, S A
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Corrosion Behaviour of Construction Materials for High Temperature Steam Electrolysers by
  • Niki for ov, A.V
  • Petrushina, I.M
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Hydrogen Evolution Reaction in Ptfe Bonded Raney-Ni Electrodes by
  • Salvi, Paolo
  • Nelil, Paolo
  • Vilia, Marco
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Investigation of Iro2 Electrocatalysts Prepared by a Sulfite-Couplex Route for O2 Evolution Reaction in Solid Polymer Electrolyte Water Electrolyzers by
  • Siracusano, S
  • Baglio, V
  • Stassi, A
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Electrochemical Performances of Pem Water Electrolysis Celis and Perspectives by
  • Miliet, P
  • Grigoriev, S. A
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Platinum and Paliadium Nano-Particles Supported by Graphitic Nano-Fibers as Catalysts for Pem Water Electrolysis by
  • Grigoriev, S. A
  • Miliet, P
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Preparation and Characterization of Co-Ru/Tio2/Mwcnts Electrocatalysts in Pem Hydrogen Electrolyzer by
  • Paunovic, Perica
  • Gogovska, Dafinka Stoevska
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Study of Catalyst Sprayed Membrane Under Irradiation Method to Prepare High Performance Membrane Electrode Assemblies for Solid Polymer Electrolyte Water Electrolysis by
  • Su, Huaneng
  • linkov, Vladimir
  • Pasupathi, Sivakumar
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Scientific and Engineering Issues Related to Pem Technology: Water Electrolysers, Fuel Celis and Unitized Regenerative Systems by
  • Miliet, P
  • Ngameni, R
  • Grigoriev, S. A
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Experimental Investigation of Solar-Hydrogen Energy System Performance by
  • Balabel, Ashraf
  • Zaky, Mohmed S
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Corrosion Behaviour of Construction Materials for High Temperature Steam Electrolysers by
  • Niki for ov, A.V
  • Petrushina, I.M
  • Christensen, Erik R
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Operation Planning of an Independent Microgrid for Cold Regions byDistribution of Fuel Celis and Water Electrolyzers Using a Genetic Algorithm by
  • Obara, Shin Ya
  • Watanabe, S
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
A Concise Model for Evaluating Water Electrolysis by
  • Shen, M
  • Shen, Muzhong
  • Bennett, Nick
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Nano-Crystalilne Ruxsn1 - Xo2 Powder Catalysts for Oxygen Evolution Reaction in Proton Exchange Membrane Water Electrolysers by
  • Wu, Xu
  • Basu, Suddhasatwa
  • Scott, Keith
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Study of a Water Electrolysis System Using a Compact Solar Celi Module with a Plant Shoot Configuration by
  • Obara, Shin Ya
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Pem Water Electrolyzers: from Electrocatalysis to Stack Development by
  • Miliet, P
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Design and Characterization of Bi-Functional Electrocatalytic Layers for Application in Pem Unitized Regenerative Fuel Celis by
  • Grigoriev, S A
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
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