The direct synthesis of H2O2 at low temperature (2 °C) from H2 and O2 using TiO2-supported Au, Pd, and Au–Pd catalysts is discussed. The Au–Pd catalysts performed significantly better than the pure Pd/TiO2 and Au/TiO2 materials. Au–Pd particles were found with a core–shell structure, with Pd concentrated on the surface. The highest yields of H2O2 were observed with uncalcined catalysts, but these were particularly unstable, losing both metals during use. In contrast, samples calcined at 400 °C were stable and could be reused several times without loss of performance. These catalysts exhibited low activity for CO oxidation at 25 °C; conversely, catalysts effective for low-temperature CO oxidation were inactive for H2 oxidation to H2O2. This ...
In this study we show that using AuPd nanoparticles supported on a commercial titanium silicate (TS‐...
Bimetallic Pd-Au samples supported on silica were prepared by different methods and tested for the d...
This thesis explores the direct synthesis of hydrogen peroxide (H2O2) from molecular hydrogen and ...
The direct synthesis of H2O2 at low temperature (2 °C) from H2 and O2 using TiO2-supported Au, Pd, a...
The direct synthesis of hydrogen peroxide with Au–Pd catalysts is described and discussed: in partic...
The direct synthesis of hydrogen peroxide from H2 and O2 offers the possibility of a new green produ...
The direct synthesis of hydrogen peroxide from H2 and O2 has been studied using a high activity AuPd...
The direct synthesis of hydrogen peroxide from H2 and O2 using a range of Au, Pd and Au–Pd metal nan...
The direct synthesis of hydrogen peroxide from hydrogen and oxygen over supported gold, palladium an...
The direct synthesis of hydrogen peroxide represents a potentially greener route for the production ...
The direct synthesis of H2O2 from molecular H2 and O2 over AuPd catalysts, supported on TiO2 and pre...
The direct synthesis of hydrogen peroxide (H2O2) from molecular H2 and O2 over Au-Pd / TiO2 catalyst...
Pd-only, Au-only and bimetallic AuPd catalysts supported on a range of supports (Al(2)O(3), TiO(2), ...
In this study we show that using AuPd nanoparticles supported on a commercial titanium silicate (TS‐...
Bimetallic Pd-Au samples supported on silica were prepared by different methods and tested for the d...
This thesis explores the direct synthesis of hydrogen peroxide (H2O2) from molecular hydrogen and ...
The direct synthesis of H2O2 at low temperature (2 °C) from H2 and O2 using TiO2-supported Au, Pd, a...
The direct synthesis of hydrogen peroxide with Au–Pd catalysts is described and discussed: in partic...
The direct synthesis of hydrogen peroxide from H2 and O2 offers the possibility of a new green produ...
The direct synthesis of hydrogen peroxide from H2 and O2 has been studied using a high activity AuPd...
The direct synthesis of hydrogen peroxide from H2 and O2 using a range of Au, Pd and Au–Pd metal nan...
The direct synthesis of hydrogen peroxide from hydrogen and oxygen over supported gold, palladium an...
The direct synthesis of hydrogen peroxide represents a potentially greener route for the production ...
The direct synthesis of H2O2 from molecular H2 and O2 over AuPd catalysts, supported on TiO2 and pre...
The direct synthesis of hydrogen peroxide (H2O2) from molecular H2 and O2 over Au-Pd / TiO2 catalyst...
Pd-only, Au-only and bimetallic AuPd catalysts supported on a range of supports (Al(2)O(3), TiO(2), ...
In this study we show that using AuPd nanoparticles supported on a commercial titanium silicate (TS‐...
Bimetallic Pd-Au samples supported on silica were prepared by different methods and tested for the d...
This thesis explores the direct synthesis of hydrogen peroxide (H2O2) from molecular hydrogen and ...