2 Schemes, 3 Tables, 5 Figures.A high surface area mesoporous TiO2 material (110 m2/g) was synthesised using a nanocasting methodology, utilizing SBA‐15 as a hard template. This material was subsequently used as a support to prepare a series of 1 wt.% AuPt/TiO2 catalysts, synthesised by conventional impregnation and sol‐immobilisation. Catalysts were tested for the oxidation of glycerol to lactic acid and their performance was compared with corresponding catalysts supported on TiO2−P25, TiO2‐anatase and TiO2‐rutile. Higher rates of reaction and higher selectivity to lactic acid were observed over nanocast TiO2 supported catalysts. The increased performance of these catalysts was attributed to the presence of Si on the surface of the support...
Exceptional selectivity of LaMnO3 perovskite supported Au catalysts for the oxidation of glycerol to...
The aerobic oxidation of glycerol provides an economically viable route to glyceraldehyde, dihydroxy...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...
A high surface area mesoporous TiO2 material (110 m2/g) was synthesised using a nanocasting methodol...
The use of heterogeneous catalysts to convert glycerol into lactic acid has been extensively investi...
The oxidation of glycerol under alkaline conditions in the presence of a heterogeneous catalyst can ...
The use of heterogeneous catalysts to convert glycerol into lactic acid has been extensively investi...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...
There is a major limitation preventing the use of bio-fuels as they are currently not economically v...
Supported gold nanoparticles are very effective catalysts for the selective oxidation of glycerol wh...
In this work, we synthesized a series of TiO2 species enclosed with different terminated facets and ...
Glycerol valorization through partial oxidation is a good way of obtaining many different molecules ...
This work was partially supported by the Associate Laboratory for Green Chemistry (LAQV), financed b...
A fundamental limitation effecting the exploitation of bio-fuels is that they are not currently econ...
Concept Glycerol is a promising chemical building block for the synthesis of fine chemicals from ren...
Exceptional selectivity of LaMnO3 perovskite supported Au catalysts for the oxidation of glycerol to...
The aerobic oxidation of glycerol provides an economically viable route to glyceraldehyde, dihydroxy...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...
A high surface area mesoporous TiO2 material (110 m2/g) was synthesised using a nanocasting methodol...
The use of heterogeneous catalysts to convert glycerol into lactic acid has been extensively investi...
The oxidation of glycerol under alkaline conditions in the presence of a heterogeneous catalyst can ...
The use of heterogeneous catalysts to convert glycerol into lactic acid has been extensively investi...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...
There is a major limitation preventing the use of bio-fuels as they are currently not economically v...
Supported gold nanoparticles are very effective catalysts for the selective oxidation of glycerol wh...
In this work, we synthesized a series of TiO2 species enclosed with different terminated facets and ...
Glycerol valorization through partial oxidation is a good way of obtaining many different molecules ...
This work was partially supported by the Associate Laboratory for Green Chemistry (LAQV), financed b...
A fundamental limitation effecting the exploitation of bio-fuels is that they are not currently econ...
Concept Glycerol is a promising chemical building block for the synthesis of fine chemicals from ren...
Exceptional selectivity of LaMnO3 perovskite supported Au catalysts for the oxidation of glycerol to...
The aerobic oxidation of glycerol provides an economically viable route to glyceraldehyde, dihydroxy...
Bimetallic AuPt nanoparticles with different Au:Pt ratios (molar ratio: 9-1, 8-2, 6-4, 2-8, 1-9) and...