Lithium aluminium hydride (LiAlH4) is a promising hydrogen storage material with a storage capacity of 10.6 mass % H2. However, its practical use is hampered by the lack of direct rehydrogenation routes. In this study, we report on the confinement of LiAlH4into the nanoporosity of a high surface area graphite resulting in a remarkable improvement of its hydrogen storage properties. Nanoconfined LiAlH4started hydrogen desorption near 135 °C and after full dehydrogenation at 300 °C limited rehydrogenation was observed at the same temperature and 7 MPa of hydrogen pressure. Rehydrogenation took place through the formation of Li3AlH6with some limited rehydrogenation back to LiAlH4indicating the existence of different (de)hydrogenation paths upo...
The investigations based on kinetic improvement and reaction mechanisms during melt infiltration, de...
Alkali metal aluminohydrides have high potential as solid hydrogen storage materials. They have been...
Lithium aluminum hydride (LiAlH4) is an interesting high capacity hydrogen storage material with fas...
LiH has great potential as a high capacity hydrogen storage material (12 wt.%), however its thermody...
Nanoconfinement of 2LiBH4-NaAlH4 into a mesoporous carbon aerogel scaffold with a pore size, BET sur...
Nanoconfinement of 2LiBH4-NaAlH4 into a mesoporous carbon aerogel scaffold with a pore size, BET sur...
The transition from a fossil fuel-dependent society to a cleaner, more sustainable society will not ...
Herein, we present the effect of the nanoconfinement of LiBH4 within porous aerogel-like carbon on i...
Herein, we present the effect of the nanoconfinement of LiBH4 within porous aerogel-like carbon on i...
Hydrogen storage properties of the ball-milled mixtures composed of hydrogenated nano-structural gra...
Nanoconfinement of 2LiBH4-NaAlH4 into a mesoporous carbon aerogel scaffold with a pore size, BET sur...
Light metal hydrides have enjoyed several decades of attention in the field of hydrogen storage, but...
Light metal hydrides have enjoyed several decades of attention in the field of hydrogen storage, but...
Intercalation and de-intercalation of lithium into graphene layers is a well-established phenomenon ...
Hydrogen storage is the most critical issue for the application of hydrogen energy. In recent years,...
The investigations based on kinetic improvement and reaction mechanisms during melt infiltration, de...
Alkali metal aluminohydrides have high potential as solid hydrogen storage materials. They have been...
Lithium aluminum hydride (LiAlH4) is an interesting high capacity hydrogen storage material with fas...
LiH has great potential as a high capacity hydrogen storage material (12 wt.%), however its thermody...
Nanoconfinement of 2LiBH4-NaAlH4 into a mesoporous carbon aerogel scaffold with a pore size, BET sur...
Nanoconfinement of 2LiBH4-NaAlH4 into a mesoporous carbon aerogel scaffold with a pore size, BET sur...
The transition from a fossil fuel-dependent society to a cleaner, more sustainable society will not ...
Herein, we present the effect of the nanoconfinement of LiBH4 within porous aerogel-like carbon on i...
Herein, we present the effect of the nanoconfinement of LiBH4 within porous aerogel-like carbon on i...
Hydrogen storage properties of the ball-milled mixtures composed of hydrogenated nano-structural gra...
Nanoconfinement of 2LiBH4-NaAlH4 into a mesoporous carbon aerogel scaffold with a pore size, BET sur...
Light metal hydrides have enjoyed several decades of attention in the field of hydrogen storage, but...
Light metal hydrides have enjoyed several decades of attention in the field of hydrogen storage, but...
Intercalation and de-intercalation of lithium into graphene layers is a well-established phenomenon ...
Hydrogen storage is the most critical issue for the application of hydrogen energy. In recent years,...
The investigations based on kinetic improvement and reaction mechanisms during melt infiltration, de...
Alkali metal aluminohydrides have high potential as solid hydrogen storage materials. They have been...
Lithium aluminum hydride (LiAlH4) is an interesting high capacity hydrogen storage material with fas...