Hydrogen production from water–methanol solution over visible light active indium–titanium oxide photocatalysts modified with copper oxide
-
Add time:09/06/2019 Source:sciencedirect.com
Titanium oxide coupled with different amount of indium oxides were studied for production of hydrogen under visible light irradiation from water–methanol solution. The photocatalysts were prepared by co-precipitation and characterized by surface area and pore analysis, X-ray diffraction, field emission scanning electron microscopy, UV–Vis diffuse reflectance spectra, and photoluminescence spectroscopy. With increases in indium oxide content, the surface area, visible light absorption and separation of photogenerated electron-holes were enhanced. For binary catalysts, the activity was highest for 16.7 at.% indium with hydrogen production of 1829 μmol/g/h. Incorporation of copper oxide further enhanced the activity with hydrogen production of 2149 μmol/g/h. The higher hydrogen production for ternary catalyst can be attributed to the synergistic effects of higher surface area, stronger absorption in visible light region and enhanced separation of photogenerated charge carriers. The hydrogen generation was attributed to partial oxidation of methanol to formaldehyde thereby producing pure hydrogen.
We also recommend Trading Suppliers and Manufacturers of INDIUM(+3)NITRATE TRIHYDRATE (cas 15650-88-1). Pls Click Website Link as below: cas 15650-88-1 suppliers
Prev:Nitric oxide generation from S-nitrosoglutathione: New activity of indium and a survey of metal ion effects
Next:The state of indium ions in nitrate solutions: A Raman spectroscopic study) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- A solution process for preparation of low resistance layered indium tin oxide films09/09/2019
- Regular ArticleHigh-response and low-temperature nitrogen dioxide gas sensor based on gold-loaded mesoporous indium trioxide09/08/2019
- The state of indium ions in nitrate solutions: A Raman spectroscopic study09/07/2019
- Nitric oxide generation from S-nitrosoglutathione: New activity of indium and a survey of metal ion effects09/05/2019
- Tuning of thermal properties of sodium acetate trihydrate by blending with polymer and silver nanoparticles09/04/2019
- Preparation of novel photosensitive indium niobate gel films and their characteristics09/03/2019
- Novel bimetallic catalyst supported by red mud for enhanced nitrate reduction09/02/2019
- Influence of Fe3+ substitution on the dielectric and ferroelectric characteristics of Lead Indium Niobate09/01/2019


