Nanoconfinement of 2LiBH4-NaAlH4 into a mesoporous carbon aerogel scaffold with a pore size, BET surface area and total pore volume of Dmax = 30 nm, SBET = 689 m2/g and Vtot = 1.21 mL/g, respectively is investigated. Nanoconfinement of 2LiBH4-NaAlH4 facilitates a reduction in the temperature of the hydrogen release by 132 °C, compared to that of bulk 2LiBH4-NaAlH4 and the onset of hydrogen release is below 100 °C. The reversible hydrogen storage capacity is also significantly improved for the nanoconfined sample, maintaining 83% of the initial hydrogen content after three cycles compared to 47% for that of the bulk sample. During nanoconfinement, LiBH4 and NaAlH4 reacts to form LiAlH4 and NaBH4 and the final dehydrogenation products, obtain...
NaBH4 is an interesting hydrogen storage material for mobile applications due to its high hydrogen c...
NaBH4 is an interesting hydrogen storage material for mobile applications due to its high hydrogen c...
Metal hydrides are likely candidates for the solid state storage of hydrogen. NaAlH4 is the only com...
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...
In this study a eutectic melting composite of 0.62LiBH4-0.38NaBH4 has been infiltrated in two nanopo...
Samples of nanoconfined Reactive Hydride Composites in resorcinol–formaldehyde (RF) aerogel scaffold...
Samples of nanoconfined Reactive Hydride Composites in resorcinol–formaldehyde (RF) aerogel scaffold...
A novel approach for confining LiBH4 within a porous aluminium scaffold was applied in order to enha...
Hydrogen has been identified as a promising energy carrier. Its combustion is not associated with po...
Hydrogen has been identified as a promising energy carrier. Its combustion is not associated with po...
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...
Lithium aluminium hydride (LiAlH4) is a promising hydrogen storage material with a storage capacity ...
The hydrogen storage properties of the eutectic melting metal borohydrides, 0.7LiBH4–0.3Ca(BH4)2, na...
NaBH4 is an interesting hydrogen storage material for mobile applications due to its high hydrogen c...
NaBH4 is an interesting hydrogen storage material for mobile applications due to its high hydrogen c...
Metal hydrides are likely candidates for the solid state storage of hydrogen. NaAlH4 is the only com...
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...
In this study a eutectic melting composite of 0.62LiBH4-0.38NaBH4 has been infiltrated in two nanopo...
Samples of nanoconfined Reactive Hydride Composites in resorcinol–formaldehyde (RF) aerogel scaffold...
Samples of nanoconfined Reactive Hydride Composites in resorcinol–formaldehyde (RF) aerogel scaffold...
A novel approach for confining LiBH4 within a porous aluminium scaffold was applied in order to enha...
Hydrogen has been identified as a promising energy carrier. Its combustion is not associated with po...
Hydrogen has been identified as a promising energy carrier. Its combustion is not associated with po...
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...
Lithium aluminium hydride (LiAlH4) is a promising hydrogen storage material with a storage capacity ...
The hydrogen storage properties of the eutectic melting metal borohydrides, 0.7LiBH4–0.3Ca(BH4)2, na...
NaBH4 is an interesting hydrogen storage material for mobile applications due to its high hydrogen c...
NaBH4 is an interesting hydrogen storage material for mobile applications due to its high hydrogen c...
Metal hydrides are likely candidates for the solid state storage of hydrogen. NaAlH4 is the only com...