INIS
reduction
100%
electrochemistry
100%
ammonia
100%
cobalt phosphides
100%
nitrates
100%
electrocatalysts
100%
current density
50%
oxidation
50%
phosphorus
50%
hydrazine
50%
catalysts
50%
cobalt
33%
efficiency
33%
stability
33%
emission
16%
increasing
16%
electrons
16%
oxygen
16%
electrolytes
16%
kinetics
16%
nitrogen dioxide
16%
energy
16%
units
16%
voltage
16%
electrodeposition
16%
bosch process
16%
hydrogenation
16%
migration
16%
carbon dioxide
16%
barriers
16%
electrolysis
16%
pollution
16%
doped materials
16%
Chemistry
Ammonia
100%
Coefficient of Performance
100%
Electrochemical Reduction
100%
Electrocatalyst
100%
Ammonia
80%
Reduction
80%
Current Density
60%
Hydrazine
60%
Oxidation Reaction
60%
Catalyst
60%
Cobalt
40%
Energy Barrier
20%
Nitrogen Dioxide
20%
Chemical Kinetics Characteristics
20%
Hydrogenation
20%
Rate-Determining Step
20%
Voltage
20%
Electrodeposition
20%
Carbon Dioxide Emission
20%
Electrolyte
20%
Electrolysis
20%
Electron Particle
20%
Chemical Reaction
20%
Haber-Bosch Process
20%
Procedure
20%
Dioxygen
20%
Material Science
Amorphous Material
100%
Density
100%
Catalyst
100%
Electrochemical Reaction
100%
Electrocatalysts
100%
Oxidation Reaction
100%
Cobalt
66%
Electrodeposition
33%
Electrolyte
33%
Oxygen Evolution
33%
Nitrogen Dioxide
33%
Catalyst Activity
33%
Carbon Dioxide
33%
Hydrogenation
33%
Chemical Engineering
Ammonia
100%
Hydrazine
100%
Phosphorus
100%
Cobalt
66%
Nitrate Reduction Reaction
33%
Hydrogenation
33%
Electrodeposition
33%
Oxygen
33%
Keyphrases
Electrochemical Nitrate Reduction
100%
Hydrazine Oxidation Reaction (HzOR)
33%
NH3 Formation
33%
Amorphous Phosphorus
33%