Mg-doped WO3 with band gap energy of about 2.6 eV is a viable photocatalyst for visible light-induced water splitting in the presence of hole scavengers. The conduction band edge position of p-type Mg-doped WO3 was -2.7 V versus SCE at pH 12. By doping Mg on WO3 the conduction and valence band positions were shifted by 2.25 V negatively, leading to a conduction band edge position which was negative enough for H+ ions to be reduced thermodynamically, with little change in band gap energy. The negative shift in band position might be ascribed to lowering of the effective electron affinity of WO3 by doping Mg with a very low electron affinity.X11153sciescopu
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Mg-doped WO3 with band gap energy of about 2.6 eV is a viable photocatalyst for visible light-induce...
The electronic properties of doped tungsten oxide (WO<sub>3</sub>) have been studied using DFT calcu...
The substitutional doping of tungsten oxide (WO3) with metal ions demonstrates a promising approach ...
Yb-doped WO3 photocatalysts were prepared by co-sputtering WO3 and Yb, followed by annealing in air ...
Multiple efforts have been made to find and utilize sustainable renewable energy to replace fossil f...
We prepared platelike Mo-doped WO3 films (Mo–WO3) deposited with Sb2S3 for photoelectrocatalytic (PE...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Mg-doped WO3 with band gap energy of about 2.6 eV is a viable photocatalyst for visible light-induce...
The electronic properties of doped tungsten oxide (WO<sub>3</sub>) have been studied using DFT calcu...
The substitutional doping of tungsten oxide (WO3) with metal ions demonstrates a promising approach ...
Yb-doped WO3 photocatalysts were prepared by co-sputtering WO3 and Yb, followed by annealing in air ...
Multiple efforts have been made to find and utilize sustainable renewable energy to replace fossil f...
We prepared platelike Mo-doped WO3 films (Mo–WO3) deposited with Sb2S3 for photoelectrocatalytic (PE...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...
Environmental pollution and global energy demand require advanced photocatalytic materials such as v...