Keyphrases
Antibacterial Ability
100%
Eco-friendly
100%
Degradation Efficiency
100%
G-C3N4 Nanocomposite
100%
S-g-C3N4
100%
Photocatalytic Dye Degradation
100%
Sulfur-doped Graphitic Carbon Nitride
42%
Band Gap
14%
Thiourea
14%
Kinetic Study
14%
Photocatalyst
14%
Calcination
14%
Nanomaterials
14%
Synergy Effect
14%
Co-precipitation Method
14%
Cobalt
14%
Escherichia Coli
14%
Composite Synthesis
14%
Nanocatalyst
14%
Antimicrobial Activity
14%
Antibacterial Activity
14%
Organic Dyes
14%
G-C3N4 Nanosheets
14%
Bacillus Subtilis (B. subtilis)
14%
Efficient Degradation
14%
Enhanced Charge Separation
14%
Methylene Blue
14%
Reduced Charge Recombination
14%
Visible Light Photocatalytic Activity
14%
MB Dye
14%
Tauc Plot
14%
UV-Vis Spectrophotometer
14%
Photocatalytic Oxidation
14%
Oxidation-reduction
14%
MnS Nanoparticles
14%
Element Doped
14%
Toxic Organic Compounds
14%
Structural Morphology
14%
Cobalt Sulfide Nanoparticles
14%
Eco-costs
14%
Photocatalytic Treatment
14%
Manganese Sulfide Nanoparticles
14%
MB Photodegradation
14%
Composite Doping
14%
Photodegradation Performance
14%
Degradation Percentage
14%
Cobalt Element
14%
Doped Nanoparticles
14%
Cobalt Content
14%
Chemical Engineering
Nanoparticle
100%
Doped Graphitic Carbon Nitride
100%
Photodegradation
66%
Kinetic Study
33%
Nanosheet
33%
Thiourea
33%
Co-precipitation Method
33%
Efficient Degradation
33%
Material Science
Graphitic Carbon Nitride
100%
Nanocomposite
100%
Cobalt
40%
Nanoparticle
30%
X-Ray Diffraction
10%
Nanosheet
10%
Composite Material
10%
Photocatalysts
10%
Coprecipitation
10%
Manganese
10%
Band-Gap Material
10%
Nanostructured Material
10%