INIS
nanoparticles
100%
interactions
58%
oxygen reduction reactions
50%
thin films
50%
metals
41%
electron transfer
36%
density functional method
32%
electrochemistry
27%
oxidation
27%
electrons
25%
synthesis
25%
morpholines
25%
tetrahydrofuran
25%
gold
25%
substrates
25%
nickel oxides
25%
platinum
25%
oxygen
22%
oxides
20%
layers
20%
dendrimers
19%
surfaces
14%
capture
12%
rings
12%
molecules
12%
benzene
12%
cations
12%
values
12%
films
12%
vacancies
11%
reduction
10%
comparative evaluations
10%
deposition
10%
removal
10%
x-ray photoelectron spectroscopy
9%
electrodes
9%
binding energy
8%
charges
6%
electrocatalysts
6%
tunneling
5%
catalysts
5%
water
5%
Material Science
Nanoparticle
80%
Gold Nanoparticle
50%
Thin Films
50%
Electron Transfer
36%
Density
32%
Gold Nanoparticles
25%
Platinum
25%
Metal Oxide
20%
Dendrimer
19%
Metal Nanoparticle
13%
Film
12%
Oxygen Vacancy
11%
Self Assembled Monolayer
10%
X-Ray Photoelectron Spectroscopy
9%
Surface (Surface Science)
8%
Oxygen Evolution
8%
Oxide Surface
6%
Electrocatalyst
6%
Keyphrases
Oxidative Dearomatization
25%
Morpholine
25%
Spirocyclic
25%
Electrochemical Synthesis
25%
Tetrahydrofuran
25%
Electrocatalytic Studies
25%
Electrooxidation
25%
Substrate Interaction
25%
Electrocatalytic Oxygen Reduction Reaction
25%
Mediated Electron Transfer
25%
Reactive Cations
12%
Electrochemical Oxidation
12%
Radical Intermediates
12%
Electron-rich
12%
Radical Cation
12%
Benzene Ring
12%
CO Electrooxidation
10%
CO Electro-oxidation Reaction
5%
Electrocatalytic Reaction
5%
CO Binding Energy
5%
Strong Metal-support Interaction
5%
Metal Oxide Layers
5%
Efficient Reduction
5%
Electrochemical Conditions
5%
Bound Electrons
5%
Conductive Electrode
5%
Metal Oxide Thin Films
5%
Beneficial Interactions
5%