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Oxygen adsorption on honeycomb
BC2
N monolayers
Gökhan Gökoǧlu,
Ethem Aktürk
Karabuk University
Adnan Menderes University
Research output
:
Contribution to journal
›
Article
›
peer-review
5
Scopus citations
Overview
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BC2
N monolayers'. Together they form a unique fingerprint.
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Keyphrases
Oxygen Adsorption
100%
Atomic Oxygen
100%
BC2N
100%
Reaction Pathway
25%
Electronic Structure
25%
Band Gap
25%
Density Functional Calculations
25%
Stable Structure
25%
Hollow
25%
Energy Pathways
25%
Geometry Optimization
25%
Oxygenation
25%
C-N Bond
25%
Adsorption Energy
25%
Bridge Site
25%
Honeycomb Monolayers
25%
Electronic Environment
25%
Adsorption Reaction
25%
Graphene-like
25%
Hexagonal Cells
25%
Semiconducting Nature
25%
Oxygenated Structure
25%
B-N Bond
25%
Engineering
Monolayers
100%
Initial Configuration
66%
Graphene
33%
Structure Type
33%
Geometry Optimization
33%
Energetics
33%
Adsorption Energy
33%
Band Gap
33%
Electronic State
33%
Energy Levels
33%
Physics
Energetics
100%
Graphene
100%
Energy Levels
100%
Hexagonal Cells
100%
Material Science
Monolayers
100%
Density
33%
Graphene
33%
Energy Levels
33%
Chemical Engineering
Graphene
100%