A rapid, facile, and environmentally benign strategy to electrochemical oxidation of metallic tungsten under pulse alternating current in an aqueous electrolyte solution was reported. Particle size, morphology, and electronic structure of the obtained WO3 nanopowders showed strong dependence on electrolyte composition (nitric, sulfuric, and oxalic acid). The use of oxalic acid as an electrolyte provides a gram-scale synthesis of WO3 nanopowders with tungsten electrochemical oxidation rate of up to 0.31 g·cm−2·h−1 that is much higher compared to the strong acids. The materials were examined as photoanodes in photoelectrochemical reforming of organic substances under solar light. WO3 synthesized in oxalic acid is shown to exhibit excellent ac...
Photocorrosion of an n-type semiconductor is anticipated to be unfavorable if its decomposition pote...
Some recent studies mainly addressing the preparation and the modification of nanostructured thin fi...
This review focuses on tungsten oxide (WO3) and its nanocomposites as photoactive nanomaterials for...
The potentiostatic anodization of metallic tungsten has been investigated in different solvent/elect...
Different chemical routes for obtaining nanostructured WO3 on transparent conductive oxides have be...
AbstractThe potentiostatic anodization of metallic tungsten has been investigated in different solve...
Tungsten oxide (WO3) electrodes were synthesized by spin-coating an ammonium metatungstate sol. Inst...
© 2021 Hydrogen Energy Publications LLCWO3 is a potential material candidate for construction of pho...
Electron-deficient and porous WO3 particles were prepared by the simple thermal oxidation of commerc...
The present work demonstrates the electrochromic and photoelectrochemical activity of wedge-like WO3...
Tungsten oxide (WO3−x) crystalline nano/microrods with identical morphology but different contents o...
Nanocrystalline WO3 absorbs visible light up to 470 nm and generates OH•radicals via valence bandinj...
The present work demonstrates the electrochromic and photoelectrochemical activity of wedge-like WO3...
Optimisation of particle sizes of WO3 films is important for photoelectrochemical applications. Howe...
The main aim of this research is to improvise strategies to improve the performance of tungsten trio...
Photocorrosion of an n-type semiconductor is anticipated to be unfavorable if its decomposition pote...
Some recent studies mainly addressing the preparation and the modification of nanostructured thin fi...
This review focuses on tungsten oxide (WO3) and its nanocomposites as photoactive nanomaterials for...
The potentiostatic anodization of metallic tungsten has been investigated in different solvent/elect...
Different chemical routes for obtaining nanostructured WO3 on transparent conductive oxides have be...
AbstractThe potentiostatic anodization of metallic tungsten has been investigated in different solve...
Tungsten oxide (WO3) electrodes were synthesized by spin-coating an ammonium metatungstate sol. Inst...
© 2021 Hydrogen Energy Publications LLCWO3 is a potential material candidate for construction of pho...
Electron-deficient and porous WO3 particles were prepared by the simple thermal oxidation of commerc...
The present work demonstrates the electrochromic and photoelectrochemical activity of wedge-like WO3...
Tungsten oxide (WO3−x) crystalline nano/microrods with identical morphology but different contents o...
Nanocrystalline WO3 absorbs visible light up to 470 nm and generates OH•radicals via valence bandinj...
The present work demonstrates the electrochromic and photoelectrochemical activity of wedge-like WO3...
Optimisation of particle sizes of WO3 films is important for photoelectrochemical applications. Howe...
The main aim of this research is to improvise strategies to improve the performance of tungsten trio...
Photocorrosion of an n-type semiconductor is anticipated to be unfavorable if its decomposition pote...
Some recent studies mainly addressing the preparation and the modification of nanostructured thin fi...
This review focuses on tungsten oxide (WO3) and its nanocomposites as photoactive nanomaterials for...