Titanium-indium (oxy)nitride composite materials with and without RuO[subscript 2] loadings were produced by treating TiO[subscript 2]-In[subscript 2]O[subscript 3] mixed powders with ammonia at high temperature (700-850 °C) (Elemental analysis indicated an empirical formula of TiIn[subscript 0.029]O[subscript 0.63]N[subscript 1.4]). We have found that ammonolysis of TiO[subscript 2] to form Ti (oxy)nitride or In[subscript 2]O[subscript 3] to form In (oxy)nitride do not give composites active toward methanol-water under visible light, but TiO[subscript 2] and In[subscript 2]O[subscript 3] mixed together do give composites active toward methanol-water under visible light. Ti-In (oxy)nitride powders modified by surface loading with RuO[subscr...
International audienceThe use of solar energy is of highest interest from a low environmental impact...
We propose insulating titanium oxynitrides TinN2O2n-3 as promising water-splitting photocatalytic ma...
The immobilization of miniscule quantities of RuO2 (~0.1%) onto one-dimensional (1D) TiO2 nanorods (...
Titanium-indium (oxy)nitride composite materials with and without RuO[subscript 2] loadings were pro...
Doctor of PhilosophyDepartment of ChemistryKenneth J. KlabundeNew photocatalystic materials Ti-In ox...
Metal nitrides have potential in energy applications because of their physical and optical propertie...
Titanium dioxide (TiO2) has drawn widespread interest by researchers as a precious semiconductor tha...
ABSTRACT: In recent years, the area of developing visible-lightactive photocatalysts based on titani...
Solar to chemical energy conversion through photocatalysis has attracted great research interest sin...
Photocatalytic water splitting for hydrogen production is considered to solve the issue of greenhous...
In recent years, the area of developing visible-lightactive\ud photocatalysts based on titanium diox...
The fabrication of high-performance, low-cost photocatalysis materials, which absorb in the visible-...
Photocatalytic activities of mesoporous RuO<sub>2</sub>/TiO<sub>2</sub> heterojunction nanocomposite...
In the present work, a phase engineering strategy is explored toward forming a titanium oxynitride (...
The preparation of visible light driven photocatalysts for photocatalytic water splitting has been a...
International audienceThe use of solar energy is of highest interest from a low environmental impact...
We propose insulating titanium oxynitrides TinN2O2n-3 as promising water-splitting photocatalytic ma...
The immobilization of miniscule quantities of RuO2 (~0.1%) onto one-dimensional (1D) TiO2 nanorods (...
Titanium-indium (oxy)nitride composite materials with and without RuO[subscript 2] loadings were pro...
Doctor of PhilosophyDepartment of ChemistryKenneth J. KlabundeNew photocatalystic materials Ti-In ox...
Metal nitrides have potential in energy applications because of their physical and optical propertie...
Titanium dioxide (TiO2) has drawn widespread interest by researchers as a precious semiconductor tha...
ABSTRACT: In recent years, the area of developing visible-lightactive photocatalysts based on titani...
Solar to chemical energy conversion through photocatalysis has attracted great research interest sin...
Photocatalytic water splitting for hydrogen production is considered to solve the issue of greenhous...
In recent years, the area of developing visible-lightactive\ud photocatalysts based on titanium diox...
The fabrication of high-performance, low-cost photocatalysis materials, which absorb in the visible-...
Photocatalytic activities of mesoporous RuO<sub>2</sub>/TiO<sub>2</sub> heterojunction nanocomposite...
In the present work, a phase engineering strategy is explored toward forming a titanium oxynitride (...
The preparation of visible light driven photocatalysts for photocatalytic water splitting has been a...
International audienceThe use of solar energy is of highest interest from a low environmental impact...
We propose insulating titanium oxynitrides TinN2O2n-3 as promising water-splitting photocatalytic ma...
The immobilization of miniscule quantities of RuO2 (~0.1%) onto one-dimensional (1D) TiO2 nanorods (...