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Reactivity of sub 1 nm supported clusters: (TiO
2
)
n
clusters supported on rutile TiO
2
(110)
Anna Iwaszuk
,
Michael Nolan
Tyndall
Tyndall MicroNano Systems
University College Cork
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Dive into the research topics of 'Reactivity of sub 1 nm supported clusters: (TiO
2
)
n
clusters supported on rutile TiO
2
(110)'. Together they form a unique fingerprint.
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Engineering
Adsorption Energy
50%
Band Gap
50%
Conduction Band
50%
Electronic State
50%
Formation Energy
50%
Oxygen Vacancy
100%
Photocatalysis
50%
Support System
50%
Valence Band
50%
Chemistry
Adsorption Energy
25%
Band Gap
25%
Conduction Band
25%
Density Functional Theory Study
25%
Electronic State
25%
formation
50%
Metal Oxide
50%
Oxygen Vacancy
50%
Photocatalysis
25%
Redox Catalysis
25%
Surface Oxygen
25%
Titanium Dioxide
100%
Valence Band
25%
Material Science
Complex System
25%
Density
25%
Metal Oxide
50%
Oxide Compound
25%
Oxygen Vacancy
50%
Photocatalysis
25%
Redox Catalysis
25%
Surface (Surface Science)
100%
Titanium Dioxide
100%
Chemical Engineering
Photocatalysis
25%
Titanium Dioxide
100%