Keyphrases
Bimetallic
50%
Bimetallic Clusters
100%
Bimetallic Nanocatalyst
50%
Catalytic Activity
50%
Catalytic Applications
50%
Catalytic Performance
50%
Catalytic Properties
50%
Co-clustering
100%
Enhanced Catalytic Activity
50%
Excellent Stability
50%
Facile Strategy
50%
Formic Acid Decomposition
50%
Formic Acid Dehydrogenation
50%
Frequency Values
50%
High Efficiency
100%
High Performance
50%
Hydrogen Generation
100%
Hydrothermal Synthesis Method
50%
Interfacial Effect
50%
Metal Species
50%
Multimetallic Nanocatalyst
50%
Nanocatalyst
100%
Ni-Co
100%
Nickel Hydroxide
50%
Pd Nanoclusters
50%
Pd Surface
50%
Poor Stability
50%
Property Stability
50%
Selective Catalysis
50%
Shape Selectivity
50%
Silicalite-1
100%
Silicalite-1 Zeolite
50%
Superior Thermal Stability
50%
Synergistic Effect
50%
Turnover Frequency
50%
Zeolite
100%
Chemistry
Catalyst Property
50%
Dehydrogenation
50%
Formic Acid
100%
Hydrogen
100%
Hydrothermal Synthesis
50%
Sintering
50%
Thermal Stability
50%
Turnover Frequency
50%
Material Science
Catalyst Activity
33%
Dehydrogenation
33%
Hydrothermal Synthesis
33%
Nanoclusters
33%
Sintering
33%
Thermal Stability
33%
Zeolite
100%
Chemical Engineering
Dehydrogenation
50%
Formic Acid
100%
Nanoclusters
50%