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State-resolved study of coadsorption effects on the stimulated dissociation of NO
2
on Pt(111)
A. R. Burns
, T. M. Orlando
, D. R. Jennison
,
E. B. Stechel
Research output
:
Contribution to journal
›
Article
›
peer-review
2
Scopus citations
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Dive into the research topics of 'State-resolved study of coadsorption effects on the stimulated dissociation of NO
2
on Pt(111)'. Together they form a unique fingerprint.
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Keyphrases
Auger Decay
25%
Charge Transfer
50%
Chemisorbed
25%
Co-adsorption
100%
Coadsorbate
25%
Dissociation
100%
Dramatic Effect
25%
Electronic Transitions
25%
Energy Distribution
25%
Gas-phase Products
25%
Increased Yield
25%
Laser Resonance Ionization
25%
NO Gas
25%
O Atom
25%
Primary Excitation
25%
Pt(111)
100%
Pt(111) Surface
25%
Rotational Excitation
25%
Spin-orbit
50%
State-resolved
100%
Surface Processes
25%
Translational Energy
25%
Two-level
25%
Vibrational Excitation
25%
Chemistry
Electronic Transition
50%
Ground State
50%
Monolayers
50%
Nitrogen Dioxide
100%
Rotational Excitation
50%
Translational Energy
50%
Vibrational Excitation
50%