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Adsorption and dissociation of N
2
on rhenium single crystal surfaces
G. Haase
*
,
M. Asscher
*
Corresponding author for this work
Institute of Chemistry
Research output
:
Contribution to journal
›
Article
›
peer-review
40
Scopus citations
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2
on rhenium single crystal surfaces'. Together they form a unique fingerprint.
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Keyphrases
Dissociation
100%
Adsorption
100%
Single Crystal Surfaces
100%
Rhenium
100%
Binding Energy
50%
Sticking Probability
50%
Temperature Range
25%
Crystallization Temperature
25%
High Pressure
25%
Low Coverage
25%
Vacuum Condition
25%
Adsorption Sites
25%
Adsorption Kinetics
25%
Nitrogen Molecule
25%
Ultra-high Vacuum
25%
Two-crystal
25%
Synthesis Study
25%
Dissociative Adsorption
25%
Physisorption
25%
Molecular Adsorption
25%
Molecular Nitrogen
25%
Ammonia Synthesis
25%
Sticking Coefficient
25%
Substrate Structure
25%
Nitrogen Dissociation
25%
Saturation Coverage
25%
Chemistry
Single Crystal Surface
100%
Rhenium
100%
Nitrogen
100%
Binding Energy
40%
Adsorption Kinetics
20%
Physisorption
20%
Molecular Adsorption
20%
Dissociative Chemisorption
20%
Ammonia Synthesis
20%
Hyperbarism
20%
Material Science
Single Crystal Surface
100%
Rhenium
100%
Chemisorption
25%
Adsorption Kinetics
25%
Molecular Adsorption
25%
Ammonia Synthesis
25%