The use of carbon materials instead of (mixed) metal oxides in selective oxidation catalysis could emerge to be of basic interest for the catalysis community. Low dimensional carbon allotropes such as multiwalled carbon nanotubes (CNTs) with high structural homogeneity provide the characteristics of model catalysts with well defined active sites as compared with polyvalent transition metal oxides featuring complex electronic and spin structures. The oxydehydrogenation (ODH) reaction over carbon has been discovered in 1979 by Alkhazov et al.[1] From the mechanistic point of view, quinone groups are believed be the active site. These nucleophilic oxygen species can selectively abstract hydrogen atoms and the formed phenol groups are subsequen...
The catalytic performance of pristine and modified CNTs for catalytic oxidation of butane/butene to ...
The conversion of alkanes into higher valued olefins by oxidative dehydrogenation (ODH) using suppor...
In the present work, the different nanostructures, i.e. carbon black, graphite, nanofilaments, nanot...
The use of carbon materials instead of (mixed) metal oxides in selective oxidation catalysis could e...
Hunting for the active site: Multiwalled carbon nanotubes are investigated as an adsorbent for propa...
Hunting for the active site: Multiwalled carbon nanotubes are investigated as an adsorbent for propa...
Relevant carbon-based materials, home-made carbon-silica hybrids, commercial activated carbon, and n...
Relevant carbon-based materials, home-made carbon-silica hybrids, commercial activated carbon, and n...
Relevant carbon-based materials, home-made carbon-silica hybrids, commercial activated carbon, and n...
Relevant carbon-based materials, home-made carbon-silica hybrids, commercial activated carbon, and n...
Relevant carbon-based materials, home-made carbon-silica hybrids, commercial activated carbon, and n...
The activation and conversion of light alkanes (such as methane, ethane, propane and isobutane) has ...
In the field of selective oxidation, the utilization of the alkanes as raw materials instead of the ...
Multidoped carbons are often used for oxygen activation catalysis, both in heterogeneous catalysis a...
Nanocarbon can promote robust and efficient electrocatalytic water oxidation through active surface ...
The catalytic performance of pristine and modified CNTs for catalytic oxidation of butane/butene to ...
The conversion of alkanes into higher valued olefins by oxidative dehydrogenation (ODH) using suppor...
In the present work, the different nanostructures, i.e. carbon black, graphite, nanofilaments, nanot...
The use of carbon materials instead of (mixed) metal oxides in selective oxidation catalysis could e...
Hunting for the active site: Multiwalled carbon nanotubes are investigated as an adsorbent for propa...
Hunting for the active site: Multiwalled carbon nanotubes are investigated as an adsorbent for propa...
Relevant carbon-based materials, home-made carbon-silica hybrids, commercial activated carbon, and n...
Relevant carbon-based materials, home-made carbon-silica hybrids, commercial activated carbon, and n...
Relevant carbon-based materials, home-made carbon-silica hybrids, commercial activated carbon, and n...
Relevant carbon-based materials, home-made carbon-silica hybrids, commercial activated carbon, and n...
Relevant carbon-based materials, home-made carbon-silica hybrids, commercial activated carbon, and n...
The activation and conversion of light alkanes (such as methane, ethane, propane and isobutane) has ...
In the field of selective oxidation, the utilization of the alkanes as raw materials instead of the ...
Multidoped carbons are often used for oxygen activation catalysis, both in heterogeneous catalysis a...
Nanocarbon can promote robust and efficient electrocatalytic water oxidation through active surface ...
The catalytic performance of pristine and modified CNTs for catalytic oxidation of butane/butene to ...
The conversion of alkanes into higher valued olefins by oxidative dehydrogenation (ODH) using suppor...
In the present work, the different nanostructures, i.e. carbon black, graphite, nanofilaments, nanot...