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Reaction fronts formation during oxygen chemical diffusion in oxides
J. Pelleg, Z. Burshtein,
M. Sinder
Department of Materials Engineering
Research output
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Contribution to journal
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Article
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peer-review
1
Scopus citations
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Dive into the research topics of 'Reaction fronts formation during oxygen chemical diffusion in oxides'. Together they form a unique fingerprint.
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Keyphrases
Oxides
100%
Oxygen Vacancy
100%
Front Formation
100%
Reaction Front
100%
Chemical Diffusion
100%
Chemical Diffusivity
100%
Diffusivity
66%
Oxygen Pressure
66%
Metal Dopants
66%
Order of Magnitude
33%
Oxygen Diffusion
33%
High Pressure
33%
Low Pressure
33%
Dynamic Change
33%
Long Interval
33%
Dopant
33%
Energy Gap
33%
Emmer
33%
Power Dependence
33%
Ambipolar Diffusion
33%
Species Dynamics
33%
Conduction Type
33%
Energy Hole
33%
Pressure Interval
33%
Dopant Energy Level
33%
Ionic States
33%
Oxide Crystals
33%
HMMER
33%
Material Science
Oxide Compound
100%
Diffusivity
100%
Doping (Additives)
80%
Oxygen Vacancy
60%
Engineering
Diffusivity
100%
Dopants
80%
Oxygen Vacancy
60%
Theoretical Study
20%
Energy Gap
20%
Chemical Engineering
Diffusion
100%