Keyphrases
Metal Alloys
100%
Dehydrogenation
100%
Nanoalloys
100%
NH3BH3
100%
RuPd
100%
Hydrolytic Dehydrogenation
100%
Hydrolytic Reaction
100%
Nanoparticles
50%
Aqueous Solution
50%
Room Temperature
50%
Catalytic Activity
50%
Hydrolysis
50%
Kinetic Isotope Effect
50%
Liquid Phase
50%
Hydrophilicity
50%
Robust Catalyst
50%
NaOH Solution
50%
Scission
50%
Turnover Frequency
50%
Catalytic Mechanism
50%
Isotopic Analysis
50%
Bimetallic Catalyst
50%
Hydrogen Energy
50%
Hydrogen Economy
50%
Cyclic Test
50%
18th
50%
Long-term Durability
50%
Frequency Generation
50%
Alloying Effect
50%
Porous Carbon
50%
Geometric Effect
50%
Hydrogen Generation Rate
50%
Enhanced Catalytic Activity
50%
Monometallic
50%
Rate-controlling Step
50%
Alloy Catalyst
50%
Anchoring Effect
50%
Ammonia Borane
50%
N/O Co-doped
50%
Self-hydrolysis
50%
RuPd Alloy
50%
Promising Strategies
50%
OH Bond
50%
Chemical Hydrogen Storage Materials
50%
Engineering
Dehydrogenation
100%
Enzymatic Activity
66%
Hydrogen Energy
33%
Hydrogen Generation
33%
Ammonia Boranes
33%
Controlling Step
33%
Chemical Hydrogen Storage
33%
Nanoparticles
33%
Room Temperature
33%
Liquid Phase
33%
Porosity
33%
Aqueous Solution
33%
Hydrophilicity
33%
Material Science
Dehydrogenation
100%
Catalyst Activity
66%
Enzymatic Hydrolysis
66%
Nanoparticle
33%
Porous Carbon
33%
Hydrogen Storage Material
33%