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Highly Visible Light Responsive, Narrow Band gap TiO2 Nanoparticles  Modified by Elemental Red Phosphorus for Photocatalysis and  Photoelectrochemical Applications | Scientific Reports
Highly Visible Light Responsive, Narrow Band gap TiO2 Nanoparticles Modified by Elemental Red Phosphorus for Photocatalysis and Photoelectrochemical Applications | Scientific Reports

Figure 6 from Photocatalytic activity of titanium dioxide modified by  silver nanoparticles. | Semantic Scholar
Figure 6 from Photocatalytic activity of titanium dioxide modified by silver nanoparticles. | Semantic Scholar

Modification strategies of TiO2 for potential applications in  photocatalysis: a critical review
Modification strategies of TiO2 for potential applications in photocatalysis: a critical review

Anatase TiO2 Quantum Dots with a Narrow Band Gap of 2.85 eV Based on  Surface Hydroxyl Groups Exhibiting Significant Photodegradation Property -  Deng - 2018 - European Journal of Inorganic Chemistry - Wiley Online Library
Anatase TiO2 Quantum Dots with a Narrow Band Gap of 2.85 eV Based on Surface Hydroxyl Groups Exhibiting Significant Photodegradation Property - Deng - 2018 - European Journal of Inorganic Chemistry - Wiley Online Library

Reconsideration of Intrinsic Band Alignments within Anatase and Rutile TiO2  | The Journal of Physical Chemistry Letters
Reconsideration of Intrinsic Band Alignments within Anatase and Rutile TiO2 | The Journal of Physical Chemistry Letters

Band Alignment and Controllable Electron Migration between Rutile and  Anatase TiO2 | Scientific Reports
Band Alignment and Controllable Electron Migration between Rutile and Anatase TiO2 | Scientific Reports

Reduction Band Gap Energy of TiO2 Assembled with Graphene Oxide Nanosheets
Reduction Band Gap Energy of TiO2 Assembled with Graphene Oxide Nanosheets

Band gap engineered TiO2 nanoparticles for visible light induced  photoelectrochemical and photocatalytic studies - Journal of Materials  Chemistry A (RSC Publishing)
Band gap engineered TiO2 nanoparticles for visible light induced photoelectrochemical and photocatalytic studies - Journal of Materials Chemistry A (RSC Publishing)

Effect of band gap engineering in anionic-doped TiO2 photocatalyst -  ScienceDirect
Effect of band gap engineering in anionic-doped TiO2 photocatalyst - ScienceDirect

Role of dopant Ga in tuning the band gap of rutile TiO2 from first  principles - ScienceDirect
Role of dopant Ga in tuning the band gap of rutile TiO2 from first principles - ScienceDirect

Molecules | Free Full-Text | Photonic Band Gap and Bactericide Performance  of Amorphous Sol-Gel Titania: An Alternative to Crystalline TiO2
Molecules | Free Full-Text | Photonic Band Gap and Bactericide Performance of Amorphous Sol-Gel Titania: An Alternative to Crystalline TiO2

Is the Band Gap of Pristine TiO2 Narrowed by Anion- and Cation-Doping of Titanium  Dioxide in Second-Generation Photocatalysts? | The Journal of Physical  Chemistry B
Is the Band Gap of Pristine TiO2 Narrowed by Anion- and Cation-Doping of Titanium Dioxide in Second-Generation Photocatalysts? | The Journal of Physical Chemistry B

Band-gap energy (hν) of TiO2-GO composites. | Download Scientific Diagram
Band-gap energy (hν) of TiO2-GO composites. | Download Scientific Diagram

Highly Visible Light Responsive, Narrow Band gap TiO2 Nanoparticles  Modified by Elemental Red Phosphorus for Photocatalysis and  Photoelectrochemical Applications | Scientific Reports
Highly Visible Light Responsive, Narrow Band gap TiO2 Nanoparticles Modified by Elemental Red Phosphorus for Photocatalysis and Photoelectrochemical Applications | Scientific Reports

Modification strategies of TiO2 for potential applications in  photocatalysis: a critical review
Modification strategies of TiO2 for potential applications in photocatalysis: a critical review

Composition and band gap energy of Cr-TiO2, Co-TiO2 and V- TiO2 | Download  Table
Composition and band gap energy of Cr-TiO2, Co-TiO2 and V- TiO2 | Download Table

a) Band gap energies and band positions of titania (anatase and... |  Download Scientific Diagram
a) Band gap energies and band positions of titania (anatase and... | Download Scientific Diagram

The band gap energy alteration of TiO2/20%WO3 composites. Reprinted and...  | Download Scientific Diagram
The band gap energy alteration of TiO2/20%WO3 composites. Reprinted and... | Download Scientific Diagram

Effect of band gap engineering in anionic-doped TiO2 photocatalyst -  ScienceDirect
Effect of band gap engineering in anionic-doped TiO2 photocatalyst - ScienceDirect

Energy Band Alignment between Anatase and Rutile TiO2 | The Journal of  Physical Chemistry Letters
Energy Band Alignment between Anatase and Rutile TiO2 | The Journal of Physical Chemistry Letters

A review on optical bandgap engineering in TiO2 nanostructures via doping  and intrinsic vacancy modulation towards visible light applications -  IOPscience
A review on optical bandgap engineering in TiO2 nanostructures via doping and intrinsic vacancy modulation towards visible light applications - IOPscience

Molecules | Free Full-Text | Photonic Band Gap and Bactericide Performance  of Amorphous Sol-Gel Titania: An Alternative to Crystalline TiO2
Molecules | Free Full-Text | Photonic Band Gap and Bactericide Performance of Amorphous Sol-Gel Titania: An Alternative to Crystalline TiO2

Preparation and characterization of Fe-doped TiO powders for solar light  response and photocatalytic applications
Preparation and characterization of Fe-doped TiO powders for solar light response and photocatalytic applications

Engineering the Band Gap States of the Rutile TiO2(110) Surface by  Modulating the Active Heteroatom - Yu - 2018 - Angewandte Chemie - Wiley  Online Library
Engineering the Band Gap States of the Rutile TiO2(110) Surface by Modulating the Active Heteroatom - Yu - 2018 - Angewandte Chemie - Wiley Online Library

A review on optical bandgap engineering in TiO2 nanostructures via doping  and intrinsic vacancy modulation towards visible light applications -  IOPscience
A review on optical bandgap engineering in TiO2 nanostructures via doping and intrinsic vacancy modulation towards visible light applications - IOPscience