Ru nanoparticles decorated TiO2 nanobelts: A heterostructure towards enhanced photocatalytic activity and gas-phase selective oxidation of benzyl alcohol
-
Add time:09/24/2019 Source:sciencedirect.com
One-dimensional (1D) TiO2 nanostructures can be used as the support of metal particles to form the heterostructures, which can prevent the metal agglomeration and enhance the activity of metal in various applications. Here, well-dispersed Ru nanoparticles (NPs) supported on 1D TiO2 nanobelts (NBs) are firstly synthesized by a facile photo-reduction method. The as-synthesized Ru/TiO2 NB heterostructures exhibit an improved photocatalytic performance compared with P25 and TiO2 under both UV and visible light irradiation. Our mechanistic investigation reveals that the enhanced photocatalytic activity can be attributed to the Schottky barrier effect of Ru NPs, which efficiently harvest the electrons of TiO2 and enhance the separation of photogenerated electron–hole pairs. Moreover, the Ru/TiO2 NB heterostructures are assembled into the porous nanopaper via a modified paper-making process, which can be applied in heterogeneous catalysis. The formed Ru/TiO2 NB heterostructure nanopapers exhibit enhanced activity and selectivity for catalyzing aerobic oxidation of benzyl alcohol. Ru NPs are well dispersed with the average size of about 1.5 nm on the TiO2 NBs support, which could contribute to the high catalytic activity of Ru/TiO2 catalyst.
We also recommend Trading Suppliers and Manufacturers of BENZYL ALCOHOL, [7-14C] (cas 13057-53-9). Pls Click Website Link as below: cas 13057-53-9 suppliers
Prev:Decatungstate catalyst supported on silica and γ-alumina: Efficient photocatalytic oxidation of benzyl alcohols
Next:Inhibition of autophagy by benzyl alcohol) - 【Back】【Close 】【Print】【Add to favorite 】
- Related Information
- The effect of linoleic acid and benzyl alcohol on the activity of glycosyltransferases of rat liver golgi membranes and some soluble glycosyltransferases09/29/2019
- The nature of the changes in liver mitochondrial function induced by glucagon treatment of rats. The effects of intramitochondrial volume, aging and benzyl alcohol09/28/2019
- Comparison of consecutive harvests versus blending treatments to produce lower alcohol wines from Cabernet Sauvignon grapes: Impact on wine volatile composition and sensory properties10/01/2019
- Amide bond synthesis via silver(I) N-heterocyclic carbene-catalyzed and tert-butyl hydroperoxide-mediated oxidative coupling of alcohols with amines under base free conditions09/27/2019
- Bi(OTf)3 catalyzed disproportionation reaction of cinnamyl alcohols09/26/2019
- Inhibition of autophagy by benzyl alcohol09/25/2019
- Decatungstate catalyst supported on silica and γ-alumina: Efficient photocatalytic oxidation of benzyl alcohols09/10/2019
- RuO2/TiO2 nanobelt heterostructures with enhanced photocatalytic activity and gas-phase selective oxidation of benzyl alcohol09/09/2019
- Benzyl alcohol induces a reversible fragmentation of the Golgi apparatus and inhibits membrane trafficking between endosomes and the trans-Golgi network09/08/2019
-
Health and Chemical more >
-
Related Products
- Alcohol dehydrogenase
- Alcohol sulphate
- Benzyl (1-(aminocarbonyl)-2-hydroxypropyl)carbamate
- Benzyl (1-cyano-1-methylethyl)carbamate
- Benzyl (1R,2S)-3-chloro-2-hydroxy-1-(phenylthiomethyl)propylcarbamate
- Benzyl (2,5-dioxo-1,3-oxazolidin-4-yl)acetate
- Benzyl (2R,3S)-(-)-6-oxo-2,3-diphenyl-4-morpholinecarboxylate
- Benzyl (2R,3S)-(1-carbamoyl-2-hydroxypropyl)carbamate
- Benzyl (2S,3aR,7aS)-octahydroindole-2-carboxylate hydrochloride
- Benzyl (2S,3aR,7aS)-octahydroindole-2-carboxylate hydrochloride


