Among the routes to perform hydrogen release from ammonia in solid state, the nanoconfinement into a carbonaceous matrix or the use of carbon-supported catalysts for the thermal degradation of ammonia borane (AB) is the most interesting one. Oxidized carbon nanotubes (CNTs) represent a suitable choice for preparing AB mixtures or for anchoring catalysts for dehydrogenation. Nevertheless, literature lacks detailed study about the influence of CNT oxidation degree on the AB degradation/hydrogen release. In this study, we first described in a comprehensive way that the thermal degradation of AB mixed with CNTs by varying the CNT oxidation degree enlightens the degradative routes mainly active in each case. Using highly oxidized CNTs, we observ...
The mechanism of thermal defunctionalization of multiwalled carbon nanotubes (CNTs) oxidized by nitr...
We investigated the effect of the reaction parameters on the structure of multi-walled carbon nanotu...
Ammonia borane (AB) is a chemically stable, non-toxic solid with a high hydrogen content (19.5 wt. %...
The Royal Society of Chemistry. Borane-amine adducts (H3N·BH3, AB) in tetrahydrofuran solution were ...
Borane–amine adducts (H3N·BH3, AB) in tetrahydrofuran solution were infiltrated into polypyrrole (PP...
Ammonia borane (AB, NH3BH3) is considered as one of the most promising hydrogen storage materials fo...
The first-principles calculations demonstrate that nitrogen-containing carbon nanostructures (NCCN),...
Unraveling the structural and kinetic consequences of catalyst properties, which vary with the catal...
The use of ammonia as a hydrogen vector has the potential to unlock the hydrogen economy. In this co...
We report the application of commercial carbon nanotubes (CNTs) in two important heterogeneously cat...
Bulk nitrogen doping can efficiently improve the catalytic performance of carbon nanotubes (CNT) in ...
Ammonia borane is an appropriate solid hydrogen storage material because of its high hydrogen conten...
Hydriding of nitrogen containing carbon nanotubes yields ammonia under mild experimental conditions....
The effect of graphitization of carbon nanotubes (CNTs) on the oxidative dehydrogenation of ethylben...
The rapidly depleting petroleum feed stocks and increasing green house gas emissions around the worl...
The mechanism of thermal defunctionalization of multiwalled carbon nanotubes (CNTs) oxidized by nitr...
We investigated the effect of the reaction parameters on the structure of multi-walled carbon nanotu...
Ammonia borane (AB) is a chemically stable, non-toxic solid with a high hydrogen content (19.5 wt. %...
The Royal Society of Chemistry. Borane-amine adducts (H3N·BH3, AB) in tetrahydrofuran solution were ...
Borane–amine adducts (H3N·BH3, AB) in tetrahydrofuran solution were infiltrated into polypyrrole (PP...
Ammonia borane (AB, NH3BH3) is considered as one of the most promising hydrogen storage materials fo...
The first-principles calculations demonstrate that nitrogen-containing carbon nanostructures (NCCN),...
Unraveling the structural and kinetic consequences of catalyst properties, which vary with the catal...
The use of ammonia as a hydrogen vector has the potential to unlock the hydrogen economy. In this co...
We report the application of commercial carbon nanotubes (CNTs) in two important heterogeneously cat...
Bulk nitrogen doping can efficiently improve the catalytic performance of carbon nanotubes (CNT) in ...
Ammonia borane is an appropriate solid hydrogen storage material because of its high hydrogen conten...
Hydriding of nitrogen containing carbon nanotubes yields ammonia under mild experimental conditions....
The effect of graphitization of carbon nanotubes (CNTs) on the oxidative dehydrogenation of ethylben...
The rapidly depleting petroleum feed stocks and increasing green house gas emissions around the worl...
The mechanism of thermal defunctionalization of multiwalled carbon nanotubes (CNTs) oxidized by nitr...
We investigated the effect of the reaction parameters on the structure of multi-walled carbon nanotu...
Ammonia borane (AB) is a chemically stable, non-toxic solid with a high hydrogen content (19.5 wt. %...