Keyphrases
Photocatalytic Degradation
100%
Heterojunction Nanofibers
100%
Degradation Properties
100%
Polyacrylonitrile
100%
Bismuth Oxybromide (BiOBr)
100%
Heterojunction
33%
Room Temperature
16%
Oxidation Reaction
16%
Degradation Efficiency
16%
Photocatalyst
16%
Visible Light Irradiation
16%
Radical Capture
16%
Photogenerated Electrons
16%
Photocatalytic Degradation Mechanism
16%
Enhanced Photocatalytic Activity
16%
Electrospun Polyacrylonitrile Nanofibers
16%
Silver Iodide
16%
Electron-hole Separation Efficiency
16%
Heterojunction Formation
16%
Rhodamine B (Rh B)
16%
Polyacrylonitrile Nanofibers
16%
UV-Vis Diffuse Reflectance Spectroscopy
16%
Growth Method
16%
Ion-exchange Mechanism
16%
Chemistry
Photocatalytic
100%
Heterojunctions
100%
Degradation Property
100%
Nanofiber
100%
Ion Exchange
25%
Ambient Reaction Temperature
25%
X-Ray Diffraction
25%
formation
25%
Radical (Chemistry)
25%
Oxidation Reaction
25%
Light Irradiation
25%
Visible Spectrum
25%
Photocatalyst
25%
UV-Vis Diffuse Reflectance Spectroscopy
25%
Bismuth
25%
Hole (Electron)
25%
Rhodamine B
25%
Engineering
Heterojunctions
100%
Nanofiber
100%
Property Degradation
100%
One Dimensional
33%
Room Temperature
33%
Electrospun
33%
X Ray Diffraction
33%
Ion Exchange
33%
Generated Electron
33%
Oxidation Reaction
33%
Photocatalysts
33%
Growth Method
33%
Heterojunction Formation
33%
Separation Efficiency
33%
Diffuse Reflectance
33%
Material Science
Heterojunction
100%
Nanofiber
100%
Polyacrylonitrile
100%
Surface (Surface Science)
14%
X-Ray Diffraction
14%
Ion Exchange
14%
Photocatalysts
14%
Bismuth
14%
UV-Vis Diffuse Reflectance Spectroscopy
14%
Chemical Engineering
Polyacrylonitrile
100%
Photocatalytic Degradation
100%
Degradation Efficiency
40%
Ion Exchange
20%
Visible Light Irradiation
20%
Free Radical
20%
Polyacrylonitrile Nanofibers
20%
Electrospun Polyacrylonitrile Nanofibers
20%