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Surface modification of perfect and hydroxylated TiO
2
rutile (110) and anatase (101) with chromium oxide nanoclusters
Marco Fronzi
, Michael Nolan
Research output
:
Contribution to journal
›
Article
›
peer-review
16
Citations (Scopus)
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Dive into the research topics of 'Surface modification of perfect and hydroxylated TiO
2
rutile (110) and anatase (101) with chromium oxide nanoclusters'. Together they form a unique fingerprint.
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Engineering & Materials Science
Nanoclusters
100%
Titanium dioxide
75%
Chromium
61%
Surface treatment
60%
Oxides
49%
Oxygen vacancies
44%
Energy gap
32%
Valence bands
26%
Red Shift
23%
Photocatalysis
22%
Density functional theory
21%
Positive ions
18%
Electrons
14%
Adsorption
14%
Oxidation
12%
Large scale systems
12%
Water
7%
Chemical Compounds
Chromium Oxide
72%
Rutile
56%
Surface Modification
49%
Titanium Dioxide
47%
Band Gap
14%
Surface
12%
Valence Band
10%
Dioxygen
9%
Photocatalysis
9%
Red
6%
Density Functional Theory
5%
Probe
5%
Cation
5%
Environment
5%
Modification
5%
Electron Particle
5%
Purity
4%
Composite Material
4%
Adsorption
4%
Energy
4%
Reduction
4%
Oxidation Reaction
4%