Concept Glycerol is a promising chemical building block for the synthesis of fine chemicals from renewable sources [1]. In particular glycerol oxidation shows a complex reaction pathway that can lead to a large number of valuable organic compounds (glyceric acid, tartronic acid, dihydroxyacetone, etc.). Supported noble metal nanoparticles have been used as catalysts for this reaction when molecular oxygen is employed as the oxidant [2]. Depending on the reaction conditions and the noble metal employed, the reaction pathway can be directed either to the oxidation of the primary or the secondary hydroxyl group. In particular Au NPs reveal peculiar properties in terms of both activity and selectivity. However only recently it was found that th...
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...
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...
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...
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...
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...
Herein, we report progress towards eliminating the need for a base while maintaining high activity a...
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...
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...
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...
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...
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...
Herein, we report progress towards eliminating the need for a base while maintaining high activity a...
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...