AbstractMn doped TiO2 was synthesized by hydrothermal treatment of titanium boride and manganese chloride. The doped nano powders were fabricated by adding ammonium water into the mother solution which was obtained hydrothermally. The calcination of precursory powders took place at the temperature of 400–600°C which resulted in the formation of anatase with a small amount of rutile phase. The shift of valence band maximum (VBM) toward the lower binding energies was observed by measuring the position of VBM with reference to the Fermi level, which contributed to the significant red-shift of absorption edges. X-ray photoelectron spectroscopy (XPS) measurement shows that manganese exists in both 4+ and 3+ valance states, which may have a tempe...
Transition metal doping into the TiO2 lattice can expand the response of these metal oxide nanoparti...
TiOz photocatalyst doped with manganese are prepared by wet impregnation methods. By doping TiOz wi...
Transition metal doping into the TiO(2) lattice can expand the response of these metal oxide nano pa...
AbstractMn doped TiO2 was synthesized by hydrothermal treatment of titanium boride and manganese chl...
Titanium dioxide (TiO2) nanoparticles, have been routinely used in cosmetic and sunscreen applicatio...
AbstractThe electronic structures, dipole moment, and optical properties of La-doped, Mn-doped, and ...
TiO2 was doped with p-type (Mn2+) and n-type (Mo6+) dopants and their photo catalytic activity was s...
Titanium dioxide (TiO2) nanoparticles with various Mn2+-doping concentration (from 0 to 12 mol%) wer...
Anatase TiO2 was doped with divalent transition metal ions like Mn2+, Ni2+ and Zn2+ and characterize...
The high photocatalytic activity of the Mn2+ doped TiO2 with bicrystalline framework of anatase and ...
WOS:000418314500005In this study, we firstly report the synthesis of pure and manganese (Mn) doped t...
Titanium dioxide is an n-type semiconductor widely used in applications like catalysts, optoelectoni...
Undoped and manganese ion-doped TiO2 powders and thin films have been prepared by sol-gel route. The...
To tackle with the energetic and environmental problems for sustainable development, titanium dioxi...
A facile and reproducible method has been developed for the synthesis of ordered anatase Mn-TiO(2) n...
Transition metal doping into the TiO2 lattice can expand the response of these metal oxide nanoparti...
TiOz photocatalyst doped with manganese are prepared by wet impregnation methods. By doping TiOz wi...
Transition metal doping into the TiO(2) lattice can expand the response of these metal oxide nano pa...
AbstractMn doped TiO2 was synthesized by hydrothermal treatment of titanium boride and manganese chl...
Titanium dioxide (TiO2) nanoparticles, have been routinely used in cosmetic and sunscreen applicatio...
AbstractThe electronic structures, dipole moment, and optical properties of La-doped, Mn-doped, and ...
TiO2 was doped with p-type (Mn2+) and n-type (Mo6+) dopants and their photo catalytic activity was s...
Titanium dioxide (TiO2) nanoparticles with various Mn2+-doping concentration (from 0 to 12 mol%) wer...
Anatase TiO2 was doped with divalent transition metal ions like Mn2+, Ni2+ and Zn2+ and characterize...
The high photocatalytic activity of the Mn2+ doped TiO2 with bicrystalline framework of anatase and ...
WOS:000418314500005In this study, we firstly report the synthesis of pure and manganese (Mn) doped t...
Titanium dioxide is an n-type semiconductor widely used in applications like catalysts, optoelectoni...
Undoped and manganese ion-doped TiO2 powders and thin films have been prepared by sol-gel route. The...
To tackle with the energetic and environmental problems for sustainable development, titanium dioxi...
A facile and reproducible method has been developed for the synthesis of ordered anatase Mn-TiO(2) n...
Transition metal doping into the TiO2 lattice can expand the response of these metal oxide nanoparti...
TiOz photocatalyst doped with manganese are prepared by wet impregnation methods. By doping TiOz wi...
Transition metal doping into the TiO(2) lattice can expand the response of these metal oxide nano pa...