Physical and chemical insights into the nature and quantity of the active sites and the intrinsic catalytic activity of nanocarbon materials in alkane oxidative dehydrogenation (ODH) reactions are reported using a novel in situ chemical titration process. A study on the structure–function relationship reveals that the active sites are identical both in nature and function on various nanocarbon catalysts. Additionally, the quantity of the active sites could be used as a metric to normalize the reaction rates, and thus to evaluate the intrinsic activity of nanocarbon catalysts. The morphology of the nanocarbon catalysts at the microscopic scale exhibits a minor influence on their intrinsic ODH catalytic activity. The number of active sites ca...
Trabajo presentado en la III International scientific school-conference for young scientists catalys...
The use of carbon materials instead of (mixed) metal oxides in selective oxidation catalysis could e...
Carbon is emerging as an important metal-free catalyst for multiple types of heterogeneous catalysis...
Physical and chemical insights into the nature and quantity of the active sites and the intrinsic ca...
Physical and chemical insights into the nature and quantity of the active sites and the intrinsic ca...
CONSPECTUS: Sustainable and environmentally benign catalytic processes are vital for the future to s...
International audienceThe oxygen-free alkane direct dehydrogenation (DDH) is a greener, safer, and m...
International audienceThe oxygen-free alkane direct dehydrogenation (DDH) is a greener, safer, and m...
International audienceThe oxygen-free alkane direct dehydrogenation (DDH) is a greener, safer, and m...
Different sp<sup>2</sup>@sp<sup>3</sup> core–shell structures are obtained on nanodiamond by using a...
Nanocarbon materials are promising catalysts of oxidative dehydrogenation (ODH) of alkanes, but impr...
Different sp2@sp3 core–shell structures are obtained on nanodiamond by using annealing treatment at ...
Carbon is emerging as an important metal-free catalyst for multiple types of heterogeneous catalysis...
Although carbon itself acts as a catalyst in various reactions, the classical carbon materials (e.g....
Carbon is emerging as an important metal-free catalyst for multiple types of heterogeneous catalysis...
Trabajo presentado en la III International scientific school-conference for young scientists catalys...
The use of carbon materials instead of (mixed) metal oxides in selective oxidation catalysis could e...
Carbon is emerging as an important metal-free catalyst for multiple types of heterogeneous catalysis...
Physical and chemical insights into the nature and quantity of the active sites and the intrinsic ca...
Physical and chemical insights into the nature and quantity of the active sites and the intrinsic ca...
CONSPECTUS: Sustainable and environmentally benign catalytic processes are vital for the future to s...
International audienceThe oxygen-free alkane direct dehydrogenation (DDH) is a greener, safer, and m...
International audienceThe oxygen-free alkane direct dehydrogenation (DDH) is a greener, safer, and m...
International audienceThe oxygen-free alkane direct dehydrogenation (DDH) is a greener, safer, and m...
Different sp<sup>2</sup>@sp<sup>3</sup> core–shell structures are obtained on nanodiamond by using a...
Nanocarbon materials are promising catalysts of oxidative dehydrogenation (ODH) of alkanes, but impr...
Different sp2@sp3 core–shell structures are obtained on nanodiamond by using annealing treatment at ...
Carbon is emerging as an important metal-free catalyst for multiple types of heterogeneous catalysis...
Although carbon itself acts as a catalyst in various reactions, the classical carbon materials (e.g....
Carbon is emerging as an important metal-free catalyst for multiple types of heterogeneous catalysis...
Trabajo presentado en la III International scientific school-conference for young scientists catalys...
The use of carbon materials instead of (mixed) metal oxides in selective oxidation catalysis could e...
Carbon is emerging as an important metal-free catalyst for multiple types of heterogeneous catalysis...