A sample of mesoporous TiO2 (MT, specific surface area = 150 m2g1) and two samples of MT containing 2.5 wt.% Fe were prepared by either direct synthesis doping (Fe2.5-MTd) or impregnation (Fe2.5-MTi). Commercial TiO2 (Degussa P25, specific surface area = 56 m2g1) was used both as a benchmark and as a support for impregnation with either 0.8 or 2.5 wt.% Fe (Fe0.80-IT and Fe2.5-IT). The powders were characterized by X-ray diffraction, N2 isotherms at 196 C, Energy Dispersive X-ray (EDX) Spectroscopy, X-ray Photoelectron Spectroscopy (XPS), Diffuse Reflectance (DR) ultra-violet (UV)-Vis and Mössbauer spectroscopies. Degradation of Acid Orange 7 (AO7) by H2O2 was the test reaction: effects of dark-conditions versus both UV and simulated ...
Mesoporous TiO2 nanoparticles synthesized by the sol-gel method were impregnated with different iron...
The purpose of the research was to determine the photocatalytic degradation efficiency of acid orang...
The purpose of the research was to determine the photocatalytic degradation efficiency of acid orang...
A sample of mesoporous TiO2 (MT, specific surface area = 150 m2g1) and two samples of MT containing ...
A sample of mesoporous TiO2 (MT, specific surface area = 150 m2\uc2\ub7g\ue2\u88\u921) and two sampl...
A sample of mesoporous TiO2(MT, specific surface area = 150 m2·gâ1) and two samples of MT containin...
A sample of mesoporous TiO2 (MT, specific surface area = 150 m2\ub7g 121) and two samples of MT cont...
A sample of mesoporous TiO2(MT, specific surface area = 150 m2·gâ\u88\u921) and two samples of MT c...
A sample of mesoporous TiO2 (MT, specific surface area = 150 m2·g−1) and two samples of MT containin...
Different amounts of Fe-doped TiO2 (with 0.1 to 10 wt.% Fe) powders were prepared at temperatures in...
Two metal-doped mesoporous titania samples (Fe-MT and V-MT) have been prepared, and characterized th...
Two metal-doped mesoporous titania samples (Fe-MT and V-MT) have been prepared, and characterized th...
Fe-doped TiO2 photocatalysts with different contents of Fe (0.5, 1.6, 3.4 and 6.4 %) were synthesize...
Titanium dioxide is a very important semiconductor with a high potential for applications in photoca...
Fe-doped TiO2 photocatalysts with different contents of Fe (0.5, 1.6, 3.4 and 6.4 %) were synthesize...
Mesoporous TiO2 nanoparticles synthesized by the sol-gel method were impregnated with different iron...
The purpose of the research was to determine the photocatalytic degradation efficiency of acid orang...
The purpose of the research was to determine the photocatalytic degradation efficiency of acid orang...
A sample of mesoporous TiO2 (MT, specific surface area = 150 m2g1) and two samples of MT containing ...
A sample of mesoporous TiO2 (MT, specific surface area = 150 m2\uc2\ub7g\ue2\u88\u921) and two sampl...
A sample of mesoporous TiO2(MT, specific surface area = 150 m2·gâ1) and two samples of MT containin...
A sample of mesoporous TiO2 (MT, specific surface area = 150 m2\ub7g 121) and two samples of MT cont...
A sample of mesoporous TiO2(MT, specific surface area = 150 m2·gâ\u88\u921) and two samples of MT c...
A sample of mesoporous TiO2 (MT, specific surface area = 150 m2·g−1) and two samples of MT containin...
Different amounts of Fe-doped TiO2 (with 0.1 to 10 wt.% Fe) powders were prepared at temperatures in...
Two metal-doped mesoporous titania samples (Fe-MT and V-MT) have been prepared, and characterized th...
Two metal-doped mesoporous titania samples (Fe-MT and V-MT) have been prepared, and characterized th...
Fe-doped TiO2 photocatalysts with different contents of Fe (0.5, 1.6, 3.4 and 6.4 %) were synthesize...
Titanium dioxide is a very important semiconductor with a high potential for applications in photoca...
Fe-doped TiO2 photocatalysts with different contents of Fe (0.5, 1.6, 3.4 and 6.4 %) were synthesize...
Mesoporous TiO2 nanoparticles synthesized by the sol-gel method were impregnated with different iron...
The purpose of the research was to determine the photocatalytic degradation efficiency of acid orang...
The purpose of the research was to determine the photocatalytic degradation efficiency of acid orang...