The direct synthesis of hydrogen peroxide from molecular H2 and O2 offers an attractive alternative to the current means of production of this powerful oxidant, on an industrial scale. Herein we investigate the role of nitric acid addition, during catalyst preparation as a means of improving catalytic performance, under reaction conditions that have previously been found to be optimal for H2O2 production. The addition of dilute nitric acid during catalyst preparation is found to lead to a significant improvement in H2O2 synthesis activity, through the modification of particle size and control of Pd oxidation state
The direct synthesis of H2O2 from molecular H2 and O2 over AuPd catalysts, supported on TiO2 and pre...
The effectiveness of Cs-exchanged phosphotungstic acid as a recoverable solid acid additive for the ...
Hydrogen peroxide (H2O2) is a highly effective, green oxidant that has found application in sectors ...
The direct synthesis of hydrogen peroxide from molecular H2 and O2 offers an attractive alternative ...
The direct synthesis of H2O2 from molecular H2 and O2 over Pd-based catalysts, prepared via an indus...
The direct synthesis of hydrogen peroxide is investigated using PdGa/TiO2 and PdIn/TiO2 catalysts pr...
The direct synthesis of hydrogen peroxide using supported gold palladium catalysts prepared by incip...
The introduction of small quantities of tertiary base metals into supported AuPd nanoparticles resul...
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...
Palladium nanoparticles have been studied extensively as catalysts for the direct synthesis of hydro...
This thesis explores the direct synthesis of hydrogen peroxide (H2O2) from molecular hydrogen and ...
The research presented in this thesis describes the direct synthesis of hydrogen peroxide from H2 an...
I The research presented in this thesis describes the direct synthesis of hydrogen peroxide from H2...
The direct synthesis of H2O2 from molecular H2 and O2 over AuPd catalysts, supported on TiO2 and pre...
The effectiveness of Cs-exchanged phosphotungstic acid as a recoverable solid acid additive for the ...
Hydrogen peroxide (H2O2) is a highly effective, green oxidant that has found application in sectors ...
The direct synthesis of hydrogen peroxide from molecular H2 and O2 offers an attractive alternative ...
The direct synthesis of H2O2 from molecular H2 and O2 over Pd-based catalysts, prepared via an indus...
The direct synthesis of hydrogen peroxide is investigated using PdGa/TiO2 and PdIn/TiO2 catalysts pr...
The direct synthesis of hydrogen peroxide using supported gold palladium catalysts prepared by incip...
The introduction of small quantities of tertiary base metals into supported AuPd nanoparticles resul...
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...
Palladium nanoparticles have been studied extensively as catalysts for the direct synthesis of hydro...
This thesis explores the direct synthesis of hydrogen peroxide (H2O2) from molecular hydrogen and ...
The research presented in this thesis describes the direct synthesis of hydrogen peroxide from H2 an...
I The research presented in this thesis describes the direct synthesis of hydrogen peroxide from H2...
The direct synthesis of H2O2 from molecular H2 and O2 over AuPd catalysts, supported on TiO2 and pre...
The effectiveness of Cs-exchanged phosphotungstic acid as a recoverable solid acid additive for the ...
Hydrogen peroxide (H2O2) is a highly effective, green oxidant that has found application in sectors ...