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Mass-selected-nanoparticles for ammonia synthesis
Lau Halkier Wandall
Surface Physics and Catalysis
Department of Physics
Research output
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Book/Report
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Ph.D. thesis
16
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Dive into the research topics of 'Mass-selected-nanoparticles for ammonia synthesis'. Together they form a unique fingerprint.
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Keyphrases
Ammonia
100%
Nanoparticles
100%
Single Crystal
100%
Ammonia Synthesis
100%
Mass Selection
100%
Cobalt
66%
Turnover Frequency
66%
Low Surface Area
66%
La2O3
66%
Promotion Mechanism
66%
Ammonia Catalyst
66%
Fe(111)
33%
Reaction Mechanism
33%
Dipole
33%
Synthesis Methods
33%
Particle Size
33%
Reactor
33%
X-ray Photoelectron Spectroscopy
33%
Nitride Films
33%
Potassium
33%
Industrial Application
33%
New Catalysts
33%
Ultra-high Vacuum
33%
High Surface Area
33%
Operating Temperature
33%
Model Catalyst
33%
Industrial Catalyst
33%
Surface Coverage
33%
Operating Pressure
33%
Ambient Pressure
33%
Experimental Strategies
33%
Promotion Effect
33%
Oxide Film
33%
Economically Feasible
33%
Mechanistic Insight
33%
Isotopic Labeling
33%
Vacuum Environment
33%
Ultra-high Vacuum System
33%
Lanthanum
33%
Quadrupole Mass Spectrometer
33%
Cobalt Nanoparticles (CoNPs)
33%
Co Nanoparticles
33%
Carbon Neutrality
33%
Global Food Production
33%
Global CO2 Emissions
33%
Reaction Cell
33%
Co Surface
33%
Technical Strategy
33%
NH3 Production
33%
Low Energy Ion Scattering
33%
Co Particles
33%
Production Account
33%
Surface Area Model
33%
Chemistry
Ammonia Synthesis
100%
Cobalt
100%
Surface Area
100%
Nanoparticle
100%
Single Crystalline Solid
66%
Turnover Frequency
66%
Ammonia
33%
Carbon Dioxide Emission
33%
Potassium
33%
Lanthanum
33%
Carbon Neutrality
33%
Quadrupole
33%
Transition Metal
33%
Density Functional Theory
33%
X Ray Photoemission Spectroscopy
33%
Nitride
33%
Engineering
Nanoparticles
100%
Ammonia Synthesis
100%
Surface Area
66%
Industrial Applications
33%
Ambient Pressure
33%
Size of Particle
33%
Mass Spectrometer
33%
Operating Pressure
33%
High Surface Area
33%
Nitride
33%
Oxide Film
33%
Surface Coverage
33%
Active High
33%
Ray Photoelectron Spectroscopy
33%
Operating Cell
33%
Starting Point
33%
Operating Temperature
33%
Discrete Fourier Transform
33%
Material Science
Nanoparticle
100%
Cobalt
100%
Ammonia Synthesis
100%
Surface (Surface Science)
66%
Single Crystal
66%
Lanthanum
33%
Nitride Compound
33%
X-Ray Photoelectron Spectroscopy
33%
Potassium
33%
Transition Metal
33%
Carbon Dioxide
33%
Oxide Film
33%
Chemical Engineering
Ammonia Synthesis
100%
Nanoparticle
100%
Transition Metal
33%
Lanthanum
33%
Carbon Dioxide
33%
Film
33%
Nitride
33%
Discrete Fourier Transform
33%