Cobalt-catalyzed low temperature Fischer–Tropsch synthesis is a prime example of an industrially relevant reaction in which CxHy intermediates involved in chain growth react in the presence of a large quantity of COad. In this study, we use a Co(0001) single-crystal model catalyst to investigate how CO, adsorbed alongside CxHy adsorbates affects their reactivity. Temperature-programmed reaction spectroscopy was used to determine the hydrogen content of the CxHy intermediates formed at different temperatures, and infrared absorption spectroscopy was used to obtain more specific information on the chemical identity of the various reaction intermediates formed. Ethene, propene, and but-1-ene precursors decompose below 200 K. The 1-alkyne adsor...
The way in which the triple bond in CO dissociates, a key reaction step in the Fischer–Tropsch (FT) ...
Microkinetic modeling is a bottom-up approach that pinpoints activity and selectivity controlling el...
A new mechanism of the Fischer–Tropsch synthesis is proposed based on the hypothesis that two incomp...
Cobalt-catalyzed low temperature Fischer-Tropsch synthesis is a prime example of an industrially rel...
\u3cp\u3eCobalt-catalyzed low temperature Fischer-Tropsch synthesis is a prime example of an industr...
Facile C-C bond formation is essential to the formation of long hydrocarbon chains in Fischer-Tropsc...
Fischer-Tropsch (FT) synthesis is one of the most complex catalyzed chemical reactions in which the ...
Fischer-Tropsch (FT) synthesis is one of the most complex catalyzed chemical reactions in which the ...
The Fischer–Tropsch (FT) process consists of the reaction of a synthesis gas (syngas) mixture contai...
\u3cp\u3eOne of the well-known observations in the Fischer-Tropsch (FT) reaction is that the CH\u3cs...
In order to understand the role of Co catalysts with different phases on Fischer–Tropsch synthesis, ...
\u3cp\u3e(Graph Presented) Experiments that provide insight into the elementary reaction steps of C\...
The Fischer-Tropsch (FT) process consists of the reaction of a synthesis gas (syngas) mixture contai...
\u3cp\u3eMonomeric forms of carbon play a central role in the synthesis of long chain hydrocarbons v...
The way in which the triple bond in CO dissociates, a key reaction step in the Fischer–Tropsch (FT) ...
Microkinetic modeling is a bottom-up approach that pinpoints activity and selectivity controlling el...
A new mechanism of the Fischer–Tropsch synthesis is proposed based on the hypothesis that two incomp...
Cobalt-catalyzed low temperature Fischer-Tropsch synthesis is a prime example of an industrially rel...
\u3cp\u3eCobalt-catalyzed low temperature Fischer-Tropsch synthesis is a prime example of an industr...
Facile C-C bond formation is essential to the formation of long hydrocarbon chains in Fischer-Tropsc...
Fischer-Tropsch (FT) synthesis is one of the most complex catalyzed chemical reactions in which the ...
Fischer-Tropsch (FT) synthesis is one of the most complex catalyzed chemical reactions in which the ...
The Fischer–Tropsch (FT) process consists of the reaction of a synthesis gas (syngas) mixture contai...
\u3cp\u3eOne of the well-known observations in the Fischer-Tropsch (FT) reaction is that the CH\u3cs...
In order to understand the role of Co catalysts with different phases on Fischer–Tropsch synthesis, ...
\u3cp\u3e(Graph Presented) Experiments that provide insight into the elementary reaction steps of C\...
The Fischer-Tropsch (FT) process consists of the reaction of a synthesis gas (syngas) mixture contai...
\u3cp\u3eMonomeric forms of carbon play a central role in the synthesis of long chain hydrocarbons v...
The way in which the triple bond in CO dissociates, a key reaction step in the Fischer–Tropsch (FT) ...
Microkinetic modeling is a bottom-up approach that pinpoints activity and selectivity controlling el...
A new mechanism of the Fischer–Tropsch synthesis is proposed based on the hypothesis that two incomp...