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Fermi-level pinning and growth characteristics of Au on InP(111)
Kathleen A. Stair
*
,
Yip Wah Chung
*
Corresponding author for this work
Materials Science and Engineering
Research output
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Contribution to journal
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Article
›
peer-review
8
Scopus citations
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Keyphrases
(111) Surface
100%
Growth Characteristics
100%
Valence Band Maximum
100%
Fermi Level pinning
100%
Annealing
66%
Phosphorus
66%
Surface Fermi Level
66%
Stoichiometry
33%
Band Gap
33%
Dissociation
33%
Xenon
33%
Photoemission
33%
Argon Sputtering
33%
Fermi Level Position
33%
Annealing Temperature
33%
Multiple Defects
33%
Subsequent Annealing
33%
Defect Levels
33%
Gold Deposition
33%
Au Clusters
33%
Physics
Fermi Surface
100%
Pinning
100%
Photoelectric Emission
50%
Stoichiometry
50%
Energy Gaps (Solid State)
50%
Engineering
Fermi Level
100%
Valence Band
75%
Saturates
25%
Annealing Temperature
25%
Photoemission
25%
Band Gap
25%
Reaction Stoichiometry
25%
Material Science
Surface (Surface Science)
100%
Annealing
25%
Xenon
25%