Two desorption peaks of hydrogen molecule (mass number=2), starting at about 600 and 950 K, respectively, are observed in thermal desorption mass spectroscopy of nanostructured graphite mechanically milled for 80 h under hydrogen atmosphere. It follows from a combined analysis of thermal desorption mass spectroscopy and thermogravimetry, that ∼6 mass % of hydrogen (corresponding to 80% of the total amount of hydrogen) is desorbed at the first desorption peak as a mixture of pure hydrogen and hydrocarbons. Below the temperature of the second desorption peak, at which recrystallization related desorption occurs, nanostructured graphite is expected to retain its specific defective structures mainly with carbon dangling bonds as suitable trappi...
Kinetics and mechanisms were studied for the thermal release of hydrogen isotopes implanted into pyr...
Magnesium was milled under hydrogen with three types of carbon allotropes: carbon black, graphite, a...
The paper gives a critical review of the literature on hydrogen storage in carbon nanostructures. Fu...
Two desorption peaks of hydrogen molecule (mass number=2), starting at about 600 and 950 K, respecti...
Nanostructured graphite was prepared by mechanical milling under a hydrogen atmosphere. Several samp...
We investigated hydrogen absorption/desorption and structural properties in mechanically milled grap...
An effective methodology for the detailed analysis of thermal desorption spectra (TDS) of hydrogen i...
Nanostructured h-BN was prepared by mechanical milling under hydrogen atmosphere. The hydrogen conce...
MgH2/graphite composite was fabricated by mech. milling elemental ingredients in hydrogen using a sp...
Hydrogen storage properties of the ball-milled mixtures composed of hydrogenated nano-structural gra...
Nanostructured hydrogenated graphite (CnanoHx) was synthesized here from graphite by ball-milling un...
Carbon nanosheets are a unique nanostructure that, at their thinnest configuration, approach a singl...
This article is devoted to some fundamental aspects of “super” storage in graphite nanofibers (GNF) ...
Measurements of hydrogen solubility have been performed for several unirradiated and neutron-irradia...
Kinetics and mechanisms were studied for the thermal release of hydrogen isotopes implanted into pyr...
Magnesium was milled under hydrogen with three types of carbon allotropes: carbon black, graphite, a...
The paper gives a critical review of the literature on hydrogen storage in carbon nanostructures. Fu...
Two desorption peaks of hydrogen molecule (mass number=2), starting at about 600 and 950 K, respecti...
Nanostructured graphite was prepared by mechanical milling under a hydrogen atmosphere. Several samp...
We investigated hydrogen absorption/desorption and structural properties in mechanically milled grap...
An effective methodology for the detailed analysis of thermal desorption spectra (TDS) of hydrogen i...
Nanostructured h-BN was prepared by mechanical milling under hydrogen atmosphere. The hydrogen conce...
MgH2/graphite composite was fabricated by mech. milling elemental ingredients in hydrogen using a sp...
Hydrogen storage properties of the ball-milled mixtures composed of hydrogenated nano-structural gra...
Nanostructured hydrogenated graphite (CnanoHx) was synthesized here from graphite by ball-milling un...
Carbon nanosheets are a unique nanostructure that, at their thinnest configuration, approach a singl...
This article is devoted to some fundamental aspects of “super” storage in graphite nanofibers (GNF) ...
Measurements of hydrogen solubility have been performed for several unirradiated and neutron-irradia...
Kinetics and mechanisms were studied for the thermal release of hydrogen isotopes implanted into pyr...
Magnesium was milled under hydrogen with three types of carbon allotropes: carbon black, graphite, a...
The paper gives a critical review of the literature on hydrogen storage in carbon nanostructures. Fu...