Keyphrases
Titanate Nanotubes
100%
Enhanced Photoactivity
100%
Bisphenol A Removal
100%
Rutile
62%
Bisphenol A
50%
Copper(II) Oxide
37%
Photodegradation
25%
UV Light
25%
Cu(II) Ions
25%
Photodegradation Efficiency
25%
Structural Change
12%
Nanostructured Materials
12%
Retention Time
12%
Environmental Applications
12%
Anatase TiO2
12%
Photocatalytic Activity
12%
As-synthesized
12%
Cu(II)
12%
X-ray Photoelectron Spectra
12%
Complete Removal
12%
Copper Ions
12%
Calcination
12%
X-ray Absorption Edge
12%
Electron Paramagnetic Resonance
12%
Interlayer Spacing
12%
Photogenerated Radicals
12%
Outer Diameter
12%
Tubular Structure
12%
Pseudo-first-order Rate Constant
12%
One-dimensional Nanotube
12%
Alkaline Hydrothermal Method
12%
Electron Mediator
12%
Enhanced Photodegradation
12%
Degussa P25
12%
Photodeposition
12%
Chemistry
Bisphenol A
100%
Titanate Nanotube
100%
Titanium Dioxide
87%
Photodegradation
50%
Copper(II) Oxide
37%
Illumination
25%
Purity
12%
Nanotube
12%
Rate Constant
12%
Photocatalytic Activity
12%
Nanocomposite
12%
EPR Spectroscopy
12%
Hydrothermal Synthesis
12%
X-Ray Photoelectron Spectrum
12%
Retention Time
12%
Nanomaterial
12%
formation
12%
Engineering
Photoactivity
100%
Titanate Nanotube
100%
Bisphenol
100%
Photodegradation
50%
Interlayer
12%
Nanomaterial
12%
One Dimensional
12%
Nanocomposite
12%
Photoelectron
12%
Ray Absorption
12%
Nanotube
12%
Retention Time
12%
Hydrothermal Synthesis
12%
Order Rate Constant
12%
Outer Diameter
12%
Material Science
Titanate Nanotube
100%
Titanium Dioxide
75%
Copper Ion
37%
Hydrothermal Synthesis
12%
Nanotube
12%
Nanostructured Material
12%
Nanocomposite
12%
Chemical Engineering
Nanotube
100%
Titanium Dioxide
77%
Photodegradation
44%