Nanoparticle model systems on planar supports form a versatile platform for studying morphological and compositional changes of catalysts due to exposure to realistic reaction conditions. We review examples from our work on iron and cobalt catalysts, which can undergo significant rearrangement in the reactive environment of the Fischer–Tropsch synthesis. The use of specially designed, silicon based supports with thin film SiO2 enables the application of transmission electron microscopy, which has furnished important insight into e.g. the mechanisms of catalyst regeneration
The catalyst used plays a pivotal role in the optimization of the Fischer Tropsch (FT) synthesis. Co...
Combining molecular beam methods and angular resolved mass spectrometry, we have studied the angular...
Catalyst deactivation is an important topic for industrial catalyst development. Sintering of small ...
Nanoparticle model systems on planar supports form a versatile platform for studying morphological a...
International audienceThanks to their stability and selectivity for long-chains hydrocarbons, suppor...
The Fischer–Tropsch synthesis (FTS) reaction is one of the most promising processes to convert alter...
Spincoating colloidal solutions of monodisperse nanoparticles onto flat silica supports offers a fac...
Understanding precursor transformation to active catalysts is crucial to heterogeneous Fischer–Trops...
In this work, we studied cobalt catalysts used in producing hydrocarbons through the Fischer-Trospch...
Heterogeneous catalysis plays a major role in modern society, for example in chemical production, su...
Nous avons étudié des catalyseurs de cobalt utilisés pour la synthèse Fischer-Tropsch des hydrocarbu...
Synthesizing catalysts with well-defined size and shape of metal nanoparticles is of vital importanc...
ABSTRACT: Understanding precursor transformation to active catalysts is crucial to heterogeneous Fis...
Recent synthesis developments have refined the use of catalyst alloys, creating structures consistin...
The catalyst used plays a pivotal role in the optimization of the Fischer Tropsch (FT) synthesis. Co...
Combining molecular beam methods and angular resolved mass spectrometry, we have studied the angular...
Catalyst deactivation is an important topic for industrial catalyst development. Sintering of small ...
Nanoparticle model systems on planar supports form a versatile platform for studying morphological a...
International audienceThanks to their stability and selectivity for long-chains hydrocarbons, suppor...
The Fischer–Tropsch synthesis (FTS) reaction is one of the most promising processes to convert alter...
Spincoating colloidal solutions of monodisperse nanoparticles onto flat silica supports offers a fac...
Understanding precursor transformation to active catalysts is crucial to heterogeneous Fischer–Trops...
In this work, we studied cobalt catalysts used in producing hydrocarbons through the Fischer-Trospch...
Heterogeneous catalysis plays a major role in modern society, for example in chemical production, su...
Nous avons étudié des catalyseurs de cobalt utilisés pour la synthèse Fischer-Tropsch des hydrocarbu...
Synthesizing catalysts with well-defined size and shape of metal nanoparticles is of vital importanc...
ABSTRACT: Understanding precursor transformation to active catalysts is crucial to heterogeneous Fis...
Recent synthesis developments have refined the use of catalyst alloys, creating structures consistin...
The catalyst used plays a pivotal role in the optimization of the Fischer Tropsch (FT) synthesis. Co...
Combining molecular beam methods and angular resolved mass spectrometry, we have studied the angular...
Catalyst deactivation is an important topic for industrial catalyst development. Sintering of small ...