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Keyphrases
Hydrogen Generation
100%
Carbon Nitride
100%
Single Precursor
100%
Hydrogen Evolution Reaction
100%
Electrochemical Water Splitting
100%
Oxygen Evolution Reaction
100%
Renewable Hydrogen
100%
Sub-1 Nm
100%
Bimetallic Particles
100%
Moco
100%
Phosphide
100%
Current Density
66%
Electrocatalyst
66%
Bimetallic Phosphide
66%
Three-dimensional (3D)
33%
Charge Transfer Resistance
33%
Low Charge
33%
Bimetallic
33%
Carbonization
33%
Highly Effective
33%
Optimal Catalyst
33%
Synergistic Effect
33%
Efficient Electrocatalyst
33%
Tafel Slope
33%
Electrochemically Active Surface Area
33%
Low Cell Voltage
33%
Strategic Design
33%
Precious Metals
33%
Electrocatalytic Performance
33%
Overall Water Splitting
33%
G-C3N4
33%
Low Onset Potential
33%
Nanoporous Network
33%
Transition Metal Catalysts
33%
Non-noble
33%
Carbon Nitride Materials
33%
Carbon Nitride Electrocatalysts
33%
Efficient Water Splitting
33%
KOH Electrolyte
33%
P-doped Carbon Nitride
33%
N, P Co-doped Carbon
33%
Metal-based Materials
33%
One-step Process
33%
Double Metal
33%
Metal Incorporation
33%
Engineering
Water Splitting
100%
Hydrogen Generation
100%
Nitride
100%
Electrocatalysts
100%
Hydrogen Evolution Reaction
75%
Oxygen Evolution Reaction
75%
Charge Transfer Resistance
25%
Synergistic Effect
25%
Active Surface
25%
Cell Voltage
25%
Step Process
25%
Nitride Material
25%
Carbonization
25%
Overall Water Splitting
25%
Material Science
Carbon Nitride
100%
Water Splitting
100%
Electrocatalysts
80%
Hydrogen Evolution
60%
Oxygen Evolution
60%
Density
40%
Transition Metal
20%
Graphitic Carbon Nitride
20%
Chemistry
Hydrogen
100%
Electrocatalyst
100%
Oxalonitrile
100%
Current Density
50%
Surface Area
25%
Transition-Metal Catalyst
25%
Noble Metal
25%
Nanoporosity
25%
carbonization
25%
Chemical Engineering
Carbon Nitride
100%
Carbonization
25%
Transition Metal
25%
Precious Metal
25%