Keyphrases
High Efficiency
100%
Catalytic Activity
100%
Peroxymonosulfate Activation
100%
Sulfadiazine Degradation
100%
Sulfadiazine
100%
Bisphenol A
66%
Magnetic Nanoparticles
66%
Copyright
33%
Synergistic Effect
33%
Effective Strategies
33%
Fe(III)
33%
Fe(II)
33%
Cobalt Catalyst
33%
Advanced Oxidation Processes
33%
Core-shell Structure
33%
Wide pH Range
33%
Active Species
33%
Co(II)
33%
Sulfonamides
33%
Electron Transfer
33%
Degradation Pathway
33%
Electron Paramagnetic Resonance
33%
Quenching Experiment
33%
Sulfur
33%
Iron Catalyst
33%
2,4-dichlorophenol (2,4-DCP)
33%
Resonance Analysis
33%
Efficient Utilization
33%
CoOOH Nanosheets
33%
Metal Ions Leaching
33%
Catalyst System
33%
Decomposition Efficiency
33%
Fe Cycle
33%
Chloroxylenol
33%
Fe Cycling
33%
Cycling Efficiency
33%
Chemistry
Sulfadiazine
100%
Magnetic Nanoparticle
50%
EPR Spectroscopy
25%
Cobalt
25%
Bisphenol A
25%
Metal Ion
25%
Electron Transport
25%
Electron Transfer
25%
Nanosheet
25%
Advanced Oxidation Process
25%
2,4-dichlorophenol
25%
Bisphenol
25%
Sulfonamide
25%
Material Science
Catalyst Activity
100%
Magnetic Nanoparticle
66%
Oxidation Reaction
33%
Cobalt
33%
Nanosheet
33%
Electron Transfer
33%
Leaching
33%
Chemical Engineering
Nanoparticle
100%
Advanced Oxidation Process
50%
Nanosheet
50%