A series of gold-palladium catalysts supported in a mesoporous surface functionalized silica SBA-15 was studied for H2O2 direct synthesis. Support functionalization was performed using different organic groups (namely SO3H, NH2 and SH) while metal was then supported by an ion exchanged method. Different Au-Pd/SBA-15 catalysts were tested in the Direct Synthesis of Hydrogen Peroxide (DSHP). Organic functional groups (SH, SO3H and NH2) with acid-base properties acted as anchoring sites controlling both the dispersion of the metallic active phase and the chemical state of gold and palladium species as Au+ and Pd2+, respectively. Compared to a Au-Pd/SBA-15 system prepared by incipient wetness impregnation over non-functionalized SBA-15, catalyt...
The direct synthesis of hydrogen peroxide presents an attractive and atom efficient route to an impo...
I The research presented in this thesis describes the direct synthesis of hydrogen peroxide from H2...
In this study we show that using AuPd nanoparticles supported on a commercial titanium silicate (TS‐...
The direct synthesis of hydrogen peroxide from hydrogen and oxygen over supported gold, palladium an...
Bimetallic Pd-Au samples supported on silica were prepared by different methods and tested for the d...
The direct synthesis of hydrogen peroxide using supported gold palladium catalysts prepared by incip...
Pd-based catalysts supported on commercial silica, SBA-15 and MCM-41 were tested for the direct synt...
The direct synthesis of hydrogen peroxide with Au–Pd catalysts is described and discussed: in partic...
Bimetallic Pd-Pt and Pd-Au samples supported on sulfated zirconia were successfully tested for the d...
Pd-only, Au-only and bimetallic AuPd catalysts supported on a range of supports (Al(2)O(3), TiO(2), ...
Palladium catalysts supported by a mesoporous form of sulfonated poly-divinylbenzene, Pd/µS-pDV...
The direct synthesis of H2O2 from molecular H2 and O2 over Pd-based catalysts, prepared via an indus...
The direct synthesis of hydrogen peroxide offers a potentially green route to the production of this...
We have studied the direct synthesis of hydrogen peroxide using a catalytic system consisting of pal...
AbstractThe direct synthesis of hydrogen peroxide using supported gold palladium catalysts prepared ...
The direct synthesis of hydrogen peroxide presents an attractive and atom efficient route to an impo...
I The research presented in this thesis describes the direct synthesis of hydrogen peroxide from H2...
In this study we show that using AuPd nanoparticles supported on a commercial titanium silicate (TS‐...
The direct synthesis of hydrogen peroxide from hydrogen and oxygen over supported gold, palladium an...
Bimetallic Pd-Au samples supported on silica were prepared by different methods and tested for the d...
The direct synthesis of hydrogen peroxide using supported gold palladium catalysts prepared by incip...
Pd-based catalysts supported on commercial silica, SBA-15 and MCM-41 were tested for the direct synt...
The direct synthesis of hydrogen peroxide with Au–Pd catalysts is described and discussed: in partic...
Bimetallic Pd-Pt and Pd-Au samples supported on sulfated zirconia were successfully tested for the d...
Pd-only, Au-only and bimetallic AuPd catalysts supported on a range of supports (Al(2)O(3), TiO(2), ...
Palladium catalysts supported by a mesoporous form of sulfonated poly-divinylbenzene, Pd/µS-pDV...
The direct synthesis of H2O2 from molecular H2 and O2 over Pd-based catalysts, prepared via an indus...
The direct synthesis of hydrogen peroxide offers a potentially green route to the production of this...
We have studied the direct synthesis of hydrogen peroxide using a catalytic system consisting of pal...
AbstractThe direct synthesis of hydrogen peroxide using supported gold palladium catalysts prepared ...
The direct synthesis of hydrogen peroxide presents an attractive and atom efficient route to an impo...
I The research presented in this thesis describes the direct synthesis of hydrogen peroxide from H2...
In this study we show that using AuPd nanoparticles supported on a commercial titanium silicate (TS‐...