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INIS
reduction
100%
nanostructures
58%
metals
52%
oxides
48%
hydrocarbons
48%
graphene
48%
carbon dioxide
48%
photocatalysis
48%
fuels
48%
catalysts
48%
stability
48%
iron
48%
removal
27%
nitrates
24%
uranium
24%
kaolinite
24%
matrices
24%
heat treatments
24%
cements
19%
bromates
17%
reactors
13%
surfaces
12%
photosynthesis
9%
ambient temperature
9%
renewable energy sources
9%
oxygen
9%
water
9%
hybrids
9%
nanomaterials
9%
carbon
9%
methane
9%
lifetime
6%
kinetics
6%
efficiency
6%
oxidation
5%
x-ray photoelectron spectroscopy
5%
concentration
5%
Keyphrases
Photocatalytic CO2 Reduction
48%
Hydrocarbon Fuel
48%
2D Platform
48%
Graphene
48%
Ternary Metal Oxides
48%
Artificial Photosynthesis
24%
Hybrid Materials
24%
Photocatalytic Reactor
24%
Carbon Dioxide CO2
24%
Carbon Materials
24%
Oxide Graphene
24%
Sunlight
24%
Ambient Pressure
24%
Nano Zero Valent Iron (nZVI)
24%
Expected Outcomes
24%
Platform System
24%
Nanomaterials
24%
Renewable Energy
24%
Ambient Temperature
24%
Hydrocarbons
24%
Methane
24%
Materials Platforms
24%
Co2+
24%
Systems-based
24%
Continuous-flow Reaction
24%
Kaolinite Catalyst
24%
Uranium(VI)
24%
Bimetallic Catalyst
14%
U(VI)
14%
Oxide Nanostructures
12%
Thermal Properties
12%
Metal Oxide Nanostructures
12%
Mechanical Properties
12%
Bromate Reduction
9%
Cu(0)
9%
Bromate
9%
Material Science
Carbon Dioxide
48%
Metal Oxide
48%
Fossil Fuel
48%
Graphene
48%
Nitrate Reduction
24%
Catalyst Support
24%
Zerovalent Iron
24%
Uranium
24%
Nanocrystalline Material
9%
Hybrid Material
9%