Keyphrases
Electrochemical Performance
100%
Electrochemical Stability
100%
Au25
100%
Collaborative Engineering
100%
Dual Catalytic Sites
100%
High Mass Loading
66%
G-C3N4
66%
Dual-site Catalyst
66%
Limit of Detection
33%
Public Health
33%
Health Risk
33%
As(III)
33%
Environmental Risk
33%
Breakage
33%
High Efficiency
33%
Activity Stability
33%
Nanoclusters
33%
Rate-determining Step
33%
Electrochemical Reactions
33%
Optimal Activity
33%
Catalytic Mechanism
33%
Atomic Scale
33%
Graphitic Carbon Nitride (g-CN)
33%
Excellent Stability
33%
Enhanced Detection
33%
Acid Catalysis
33%
Dual Active Sites
33%
Catalytic Efficiency
33%
Water Quality Monitoring
33%
Surface Sites
33%
Neutral Condition
33%
Reaction Barrier
33%
Barrier Energy
33%
Au25(SG)18
33%
Catalysis Efficiency
33%
Pt Single Atoms
33%
Arsenic Contamination
33%
Arsenic Acid
33%
Biochemistry, Genetics and Molecular Biology
Catalytic Efficiency
100%
Catalytic Mechanism
100%
Arsenite
100%
Arsenous Acid
100%
Arsenic Trioxide
100%
Material Science
Graphitic Carbon Nitride
100%
Surface (Surface Science)
50%
Catalysis
50%
Electrochemical Reaction
50%
Nanoclusters
50%
Arsenic
50%
Acid Catalysis
50%
Chemistry
stability
100%
formation
33%
Rate-Determining Step
33%
Oxalonitrile
33%
Acid Catalysis
33%
Energy Barrier
33%
Electrochemical Reaction
33%
Neutral Condition
33%
Arsenous Acid
33%
Chemical Engineering
Nanoclusters
100%
Carbon Nitride
100%