Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and the corresponding Au and Pt monometallic ones were prepared by sol immobilization and immobilized on commercial TiO2 (P25). The catalytic activity was evaluated in the liquid phase glycerol oxidation in presence and absence of a base (NaOH). It was found that the Au:Pt molar ratio and reaction conditions strongly influence the catalytic performance. In the presence of NaOH, Au-rich catalysts were more active than Pt-rich ones, with the highest activity observed for Au9Pt1/TiO2 (6575 h 121). In absence of a base, a higher content of Pt is needed to produce the most active catalyst (Au6Pt4/TiO2, 301 h 121). In terms of selectivity, in presence...
Carbon supported gold catalysts are highly active in the liquid phase oxidation of glycerol. In part...
Supported gold nanoparticles are very effective catalysts for the selective oxidation of glycerol wh...
Supported gold nanoparticles are very effective catalysts for the selective oxidation of glycerol wh...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...
The aerobic oxidation of glycerol provides an economically viable route to glyceraldehyde, dihydroxy...
Base-free selective oxidation of glycerol has been investigated using trimetallic Au–Pd–Pt nanoparti...
Base-free selective oxidation of glycerol has been investigated using trimetallic Au–Pd–Pt nanoparti...
Base-free selective oxidation of glycerol has been investigated using trimetallic Au–Pd–Pt nanoparti...
Concept Glycerol is a promising chemical building block for the synthesis of fine chemicals from ren...
Carbon supported gold catalysts are highly active in the liquid phase oxidation of glycerol. In part...
Supported gold nanoparticles are very effective catalysts for the selective oxidation of glycerol wh...
Supported gold nanoparticles are very effective catalysts for the selective oxidation of glycerol wh...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...
The aerobic oxidation of glycerol provides an economically viable route to glyceraldehyde, dihydroxy...
Base-free selective oxidation of glycerol has been investigated using trimetallic Au–Pd–Pt nanoparti...
Base-free selective oxidation of glycerol has been investigated using trimetallic Au–Pd–Pt nanoparti...
Base-free selective oxidation of glycerol has been investigated using trimetallic Au–Pd–Pt nanoparti...
Concept Glycerol is a promising chemical building block for the synthesis of fine chemicals from ren...
Carbon supported gold catalysts are highly active in the liquid phase oxidation of glycerol. In part...
Supported gold nanoparticles are very effective catalysts for the selective oxidation of glycerol wh...
Supported gold nanoparticles are very effective catalysts for the selective oxidation of glycerol wh...