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May 2005
This article was originally published in
Journal of Fuel Cell Science and Technology
ISSN 1550-624X
EISSN 1551-6989
In this Issue
Research Paper
Effect of Operating Parameters on the DMFC Performance
J. Fuel Cell Sci. Technol. May 2005, 2(2): 81–85.
doi: https://doi.org/10.1115/1.1840887
Alloy Effect on the Reversible Potential of OOH(ads) Formation from relative to Pt(111)
J. Fuel Cell Sci. Technol. May 2005, 2(2): 86–93.
doi: https://doi.org/10.1115/1.1867972
Topics:
Alloys
,
Chromium alloys
,
Electrons
,
Heat losses
,
Overvoltage
,
Platinum alloys
,
Skin
,
Surface science
,
Water
Dynamic Modeling on the Hybrid Molten Carbonate Fuel Cell-Gas Turbine Bottoming Cycle
J. Fuel Cell Sci. Technol. May 2005, 2(2): 94–98.
doi: https://doi.org/10.1115/1.1867973
Topics:
Compressors
,
Cycles
,
Dynamic response
,
Fuel cells
,
Fuels
,
Gas turbines
,
Hybrid power systems
,
Molten carbonate fuel cells
,
Turbines
,
Generators
Comparison of Methodologies for Determination of Fracture Strength of Yttria-Stabilized Zirconia Electrolyte Materials
J. Fuel Cell Sci. Technol. May 2005, 2(2): 99–103.
doi: https://doi.org/10.1115/1.1867974
Topics:
Disks
,
Electrolytes
,
Finite element analysis
,
Fracture toughness
,
Pressure
,
Stress
,
Stress concentration
,
Testing
,
Solid oxide fuel cells
,
Displacement
A New PtRu Anode Formed by Thermal Decomposition for the Direct Method Fuel Cell
J. Fuel Cell Sci. Technol. May 2005, 2(2): 104–110.
doi: https://doi.org/10.1115/1.1867975
Topics:
Anodes
,
Catalysts
,
Fuel cells
,
Methanol
,
Oxidation
,
Titanium
,
Direct methanol fuel cells
,
Carbon
,
Electrodes
,
Electrochemical impedance spectroscopy
Discharge of a Segmented Polymer Electrolyte Membrane Fuel Cell
J. Fuel Cell Sci. Technol. May 2005, 2(2): 111–120.
doi: https://doi.org/10.1115/1.1867977
Optimization of the Operating Parameters of a Proton Exchange Membrane Fuel Cell for Maximum Power Density
J. Fuel Cell Sci. Technol. May 2005, 2(2): 121–135.
doi: https://doi.org/10.1115/1.1867978
Topics:
Anodes
,
Catalysts
,
Electrodes
,
Membranes
,
Optimization
,
Power density
,
Proton exchange membrane fuel cells
,
Temperature
,
Fuel cells
,
Design
Application of an Anode Model to Investigate Physical Parameters in an Internal Reforming Solid-Oxide Fuel Cell
J. Fuel Cell Sci. Technol. May 2005, 2(2): 136–140.
doi: https://doi.org/10.1115/1.1895925
Topics:
Anodes
,
Solid oxide fuel cells
,
Electrodes
Technical Brief
Efficient Parallel Simulation of Direct Methanol Fuel Cell Models
J. Fuel Cell Sci. Technol. May 2005, 2(2): 141–144.
doi: https://doi.org/10.1115/1.1840866
Topics:
Direct methanol fuel cells
,
Fuel cells
,
Modeling
,
Simulation
,
Computation
,
Parallel processing
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