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Hemminger Research Group: About Us
Hemminger Research Group: About Us

Water splitting catalyzed by titanium dioxide decorated with plasmonic  nanoparticles
Water splitting catalyzed by titanium dioxide decorated with plasmonic nanoparticles

Visible-light activation of TiO2 photocatalysts: Advances in theory and  experiments - ScienceDirect
Visible-light activation of TiO2 photocatalysts: Advances in theory and experiments - ScienceDirect

Mechanism of Photocatalysis. At the point when photocatalyst… | by Hygia  India | Medium
Mechanism of Photocatalysis. At the point when photocatalyst… | by Hygia India | Medium

Figure 2 from Band gap narrowing of titanium oxide semiconductors by  noncompensated anion-cation codoping for enhanced visible-light  photoactivity. | Semantic Scholar
Figure 2 from Band gap narrowing of titanium oxide semiconductors by noncompensated anion-cation codoping for enhanced visible-light photoactivity. | Semantic Scholar

Figure 3 from Band gap narrowing of titanium oxide semiconductors by  noncompensated anion-cation codoping for enhanced visible-light  photoactivity. | Semantic Scholar
Figure 3 from Band gap narrowing of titanium oxide semiconductors by noncompensated anion-cation codoping for enhanced visible-light photoactivity. | Semantic Scholar

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

Band Gap Measurement of Titanium Oxide (UV) : SHIMADZU (Shimadzu  Corporation)
Band Gap Measurement of Titanium Oxide (UV) : SHIMADZU (Shimadzu Corporation)

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

Frontiers | Black TiO2 Synthesis by Chemical Reduction Methods for  Photocatalysis Applications
Frontiers | Black TiO2 Synthesis by Chemical Reduction Methods for Photocatalysis Applications

Band Gap energy of (a) TiO2 (b) La:Co:TiO2. | Download Scientific Diagram
Band Gap energy of (a) TiO2 (b) La:Co:TiO2. | Download Scientific Diagram

Catalysts | Free Full-Text | Recent Advances on Small Band Gap  Semiconductor Materials (≤2.1 eV) for Solar Water Splitting
Catalysts | Free Full-Text | Recent Advances on Small Band Gap Semiconductor Materials (≤2.1 eV) for Solar Water Splitting

TiO2-Low Band Gap Semiconductor Heterostructures for Water Treatment Using  Sunlight-Driven Photocatalysis | IntechOpen
TiO2-Low Band Gap Semiconductor Heterostructures for Water Treatment Using Sunlight-Driven Photocatalysis | IntechOpen

Synthesis and application of titanium dioxide photocatalysis for energy,  decontamination and viral disinfection: a review | SpringerLink
Synthesis and application of titanium dioxide photocatalysis for energy, decontamination and viral disinfection: a review | SpringerLink

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

Energy band diagrams for: (a) titanium oxide; (b) hafnium oxide; and... |  Download Scientific Diagram
Energy band diagrams for: (a) titanium oxide; (b) hafnium oxide; and... | Download Scientific Diagram

Composite Titanium Dioxide Nanomaterials | Chemical Reviews
Composite Titanium Dioxide Nanomaterials | Chemical Reviews

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)

Electronic Band Structure of Titania Semiconductor Nanosheets Revealed by  Electrochemical and Photoelectrochemical Studies | Journal of the American  Chemical Society
Electronic Band Structure of Titania Semiconductor Nanosheets Revealed by Electrochemical and Photoelectrochemical Studies | Journal of the American Chemical Society

Tuning the optical energy band gap of sol-gel-based titanium dioxide  nanocomposite particles incorporated with ITO, fullerene, and SWCNT |  Semantic Scholar
Tuning the optical energy band gap of sol-gel-based titanium dioxide nanocomposite particles incorporated with ITO, fullerene, and SWCNT | Semantic Scholar

Photocatalytic Activity Enhancement of Titanium Dioxide Nanoparticles |  SpringerLink
Photocatalytic Activity Enhancement of Titanium Dioxide Nanoparticles | SpringerLink

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

Characterization of titanium oxide optical band gap produced from leachate  sludge treatment with titanium tetrachloride | SpringerLink
Characterization of titanium oxide optical band gap produced from leachate sludge treatment with titanium tetrachloride | SpringerLink

Band gap narrowing of titanium dioxide (TiO2) nanocrystals by  electrochemically active biofilms and their visible light activity -  Nanoscale (RSC Publishing)
Band gap narrowing of titanium dioxide (TiO2) nanocrystals by electrochemically active biofilms and their visible light activity - Nanoscale (RSC Publishing)

Band Gap Measurements on Titanium Dioxide Powder
Band Gap Measurements on Titanium Dioxide Powder

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

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

Bandgap reduction of photocatalytic TiO2 nanotube by Cu doping | Scientific  Reports
Bandgap reduction of photocatalytic TiO2 nanotube by Cu doping | Scientific Reports