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High surface area molybdenum nitride support for fuel cell electrodes
K. J. Blackmore
, L. Elbaz
, E. Bauer
, E. L. Brosha
, K. More
, T. M. McCleskey
, A. K. Burrell
Research output
:
Contribution to journal
›
Article
›
peer-review
25
Scopus citations
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Keyphrases
Alternative Supports
50%
Aqueous Conditions
50%
Catalytic Activity
50%
Ceramic Materials
50%
Conductive Support
50%
Crystallites
50%
Electrochemical Analysis
100%
Forming Gas
50%
Fuel Cell Electrodes
100%
Gas Atmosphere
50%
High Surface Area
100%
Highly Stable
50%
In Situ TEM
50%
Incipient Wetness
50%
Molybdenum
50%
Molybdenum Nitride
100%
Oxygen Reduction
100%
Polyethyleneimine
50%
Proton Exchange Membrane Fuel Cell (PEMFC)
50%
Reduction Reaction
100%
SEM Analysis
50%
SEM-TEM
50%
Tube Furnace
50%
XRD Analysis
50%
Material Science
Catalyst Activity
25%
Ceramic Material
25%
Crystallite
25%
Electrochemical Reaction
50%
Molybdenum
100%
Nitride Compound
100%
Platinum
100%
Polyethyleneimine
25%
Proton-Exchange Membrane Fuel Cells
25%
Scanning Electron Microscopy
25%
X-Ray Diffraction
25%
Chemical Engineering
Fuel Cell Membrane
50%
Nitride
100%