Improving both the extent of metallic Co nanoparticle (Co NP) formation and their stability is necessary to ensure good catalytic performance, particularly for Fischer–Tropsch synthesis (FTS). Here, we observe how the presence of surface oxygen vacancies (Ovac) on TiO2 can readily reduce individual Co3O4 NPs directly into CoO/Co0 in the freshly prepared sample by using a combination of X-ray photoemission electron microscopy (X-PEEM) coupled with soft X-ray absorption spectroscopy. The Ovac are particularly good at reducing the edge of the NPs as opposed to their center, leading to smaller particles being more reduced than larger ones. We then show how further reduction (and Ovac consumption) is achieved during heating in H2/syngas (H2 + CO...
Size effects on Co-based Fischer Tropsch synthesis (FTS) catalysts are well known, however their evo...
Ambient pressure photoelectron and absorption spectroscopies were applied under 0.2 mbar of O2 and H...
A state-of-the-art operando spectroscopic technique is applied to Co/TiO 2 catalysts, which account ...
Improving both the extent of metallic Co nanoparticle (Co NP) formation and their stability is neces...
The nanoparticle (NP) redox state is an important parameter in the performance of cobalt-based Fisch...
Fischer-Tropsch synthesis (FTS), involves the hydrogenation of CO under high pressure and is an alte...
Understanding the metal–support interaction (MSI) is crucial to comprehend how the catalyst support ...
Due to the reducible nature of TiO2, the encapsulation of cobalt nanoparticles (CoNPs) by reduced Ti...
The composition of the reducing gas in the activation of Co Fischer-Tropsch synthesis catalysts dete...
Hydrogenations of CO or CO2 are important catalytic reactions as they are interesting alternatives t...
Journal ArticleRecent experiments on CO oxidation reaction using seven-atom Au clusters deposited on...
Metal-support interactions are frequently invoked to explain the enhanced catalytic activity of meta...
Different supporting procedures were followed to alter the nanoparticle–support interactions (NPSI) ...
Different supporting procedures were followed to alter the nanoparticle–support interactions (NPSI) ...
We report results of a comprehensive study on the effect of bulk defects on the catalytic behavior o...
Size effects on Co-based Fischer Tropsch synthesis (FTS) catalysts are well known, however their evo...
Ambient pressure photoelectron and absorption spectroscopies were applied under 0.2 mbar of O2 and H...
A state-of-the-art operando spectroscopic technique is applied to Co/TiO 2 catalysts, which account ...
Improving both the extent of metallic Co nanoparticle (Co NP) formation and their stability is neces...
The nanoparticle (NP) redox state is an important parameter in the performance of cobalt-based Fisch...
Fischer-Tropsch synthesis (FTS), involves the hydrogenation of CO under high pressure and is an alte...
Understanding the metal–support interaction (MSI) is crucial to comprehend how the catalyst support ...
Due to the reducible nature of TiO2, the encapsulation of cobalt nanoparticles (CoNPs) by reduced Ti...
The composition of the reducing gas in the activation of Co Fischer-Tropsch synthesis catalysts dete...
Hydrogenations of CO or CO2 are important catalytic reactions as they are interesting alternatives t...
Journal ArticleRecent experiments on CO oxidation reaction using seven-atom Au clusters deposited on...
Metal-support interactions are frequently invoked to explain the enhanced catalytic activity of meta...
Different supporting procedures were followed to alter the nanoparticle–support interactions (NPSI) ...
Different supporting procedures were followed to alter the nanoparticle–support interactions (NPSI) ...
We report results of a comprehensive study on the effect of bulk defects on the catalytic behavior o...
Size effects on Co-based Fischer Tropsch synthesis (FTS) catalysts are well known, however their evo...
Ambient pressure photoelectron and absorption spectroscopies were applied under 0.2 mbar of O2 and H...
A state-of-the-art operando spectroscopic technique is applied to Co/TiO 2 catalysts, which account ...