With a focus on catalysts prepared by an excess-chloride wet impregnation procedure and supported on the zeolite ZSM-5(30), the introduction of low concentrations of tertiary base metals, in particular Cu, into supported AuPd nanoparticles can be observed to enhance catalytic activity towards the direct synthesis of H2O2. Indeed the optimal catalyst formulation (1%AuPd(0.975)Cu(0.025)/ZSM-5) is able to achieve rates of H2O2 synthesis (115 molH2O2kgcat−1h−1) approximately 1.7 times that of the bi-metallic analogue (69 molH2O2kgcat−1h−1) and rival that previously reported over comparable materials which use Pt as a dopant. Notably, the introduction of Cu at higher loadings results in an inhibition of performance. Detailed analysis by CO-DRFIT...
The research presented in this thesis describes the direct synthesis of hydrogen peroxide from H2 an...
Catalysts consisting of Au, Pd and their alloys have been shown to be active oxidation catalysts. Th...
AbstractThe direct synthesis of hydrogen peroxide using supported gold palladium catalysts prepared ...
With a focus on catalysts prepared by an excess-chloride wet impregnation procedure and supported on...
The introduction of small quantities of tertiary base metals into supported AuPd nanoparticles resul...
The direct synthesis of H2O2 from molecular H2 and O2 over AuPd catalysts, supported on TiO2 and pre...
The introduction of small quantities of Pt into supported AuPd nanoparticles is found to result in e...
The direct synthesis of H2O2 from molecular H2 and O2 over Pd-based catalysts, prepared via an indus...
In this study we show that using gold palladium nanoparticles supported on a commercial aluminosilic...
In this study we show that using AuPd nanoparticles supported on a commercial titanium silicate (TS‐...
I The research presented in this thesis describes the direct synthesis of hydrogen peroxide from H2...
The direct synthesis of hydrogen peroxide from molecular H2 and O2 offers an attractive alternative ...
Catalysts consisting of Au, Pd and their alloys have been shown to be active oxidation catalysts. Th...
The direct synthesis of hydrogen peroxide using supported gold palladium catalysts prepared by incip...
The research presented in this thesis describes the direct synthesis of hydrogen peroxide from H2 an...
Catalysts consisting of Au, Pd and their alloys have been shown to be active oxidation catalysts. Th...
AbstractThe direct synthesis of hydrogen peroxide using supported gold palladium catalysts prepared ...
With a focus on catalysts prepared by an excess-chloride wet impregnation procedure and supported on...
The introduction of small quantities of tertiary base metals into supported AuPd nanoparticles resul...
The direct synthesis of H2O2 from molecular H2 and O2 over AuPd catalysts, supported on TiO2 and pre...
The introduction of small quantities of Pt into supported AuPd nanoparticles is found to result in e...
The direct synthesis of H2O2 from molecular H2 and O2 over Pd-based catalysts, prepared via an indus...
In this study we show that using gold palladium nanoparticles supported on a commercial aluminosilic...
In this study we show that using AuPd nanoparticles supported on a commercial titanium silicate (TS‐...
I The research presented in this thesis describes the direct synthesis of hydrogen peroxide from H2...
The direct synthesis of hydrogen peroxide from molecular H2 and O2 offers an attractive alternative ...
Catalysts consisting of Au, Pd and their alloys have been shown to be active oxidation catalysts. Th...
The direct synthesis of hydrogen peroxide using supported gold palladium catalysts prepared by incip...
The research presented in this thesis describes the direct synthesis of hydrogen peroxide from H2 an...
Catalysts consisting of Au, Pd and their alloys have been shown to be active oxidation catalysts. Th...
AbstractThe direct synthesis of hydrogen peroxide using supported gold palladium catalysts prepared ...