Keyphrases
Atomic Layer Deposition
100%
Electrochemical Performance
100%
Pt-TiO2
100%
Pt Surface
100%
Hydrogen Oxidation Reaction
100%
Strong Metal-support Interaction
100%
Reaction Activity
100%
Oxygen Reduction Reaction
66%
CO Oxidation
66%
Oxygen Evolution Reaction
66%
TiOx
66%
Particle Size
33%
Rutile
33%
Pt Particles
33%
Heterogeneous Catalysis
33%
Oxide Formation
33%
Measurement Scale
33%
Titanium Oxide Film
33%
Interaction Effect
33%
Hydrogen Transport
33%
Transport Limitation
33%
Proton Transport
33%
Pt Particle Size
33%
Cyclic Voltammetry Studies
33%
Catalytic Behavior
33%
Oxygenated Species
33%
Platinum Oxide
33%
Metal-metal Oxide
33%
Electrocatalysis
33%
Selective Permeability
33%
Depositional Cycle
33%
Good Control
33%
Metal Oxide Systems
33%
Reduced Titania
33%
Oxidation Evolution Reaction
33%
Electrocatalyses
33%
INIS
interactions
100%
electrochemistry
100%
metals
100%
hydrogen
100%
oxidation
100%
titanium oxides
100%
potentials
100%
layers
60%
surfaces
60%
thin films
60%
deposition
60%
particle size
40%
titanium
40%
transport
40%
films
40%
oxygen
40%
oxygen reduction reactions
40%
control
20%
oxides
20%
size
20%
increasing
20%
particles
20%
coverings
20%
permeability
20%
catalysis
20%
voltametry
20%
heterogeneous catalysis
20%
protons
20%
platinum oxides
20%
Material Science
Titanium Dioxide
100%
Surface (Surface Science)
75%
Thin Films
75%
Oxygen Evolution
50%
Metal Oxide
25%
Catalysis
25%
Platinum
25%
Cyclic Voltammetry
25%
Heterogeneous Catalysis
25%
Film
25%
Titanium Oxide
25%
Oxide Compound
25%
Oxide Film
25%
Chemical Engineering
Titanium Dioxide
100%
Strong Metal-Support Interaction
100%
Film
100%
Atomic Layer Deposition
60%
CO Oxidation Reaction
40%
Titanium Oxide
20%