Complex hydrides are mixed ionic-covalent compounds that can serve as reversible H-2 storage media only when they are catalyzed by a transition metal such as Ti. As the prime example, the phenomenology of Ti-catalyzed sodium alanate (NaAlH4) is reviewed from a historical perspective. Dehydriding yields a theoretical 5.6 wt% H-2 during two-step decomposition, NaAlH4 --> Na(3)AIH(6) --> NaH + Al, although 100% recovery of that H-2 is not currently possible. H-2 can be discharged and recharged at practical rates at 125degreesC. More work is needed on the alanates, in particular, as well as the identification and optimization of the catalytic mechanism and a broad extension of the concept to other than Na-based alanates. The possibility of an e...
The dehydriding and rehydriding of sodium aluminium hydride, NaAlR4, is kinetically enhanced and ren...
Complex metal hydrides, containing up to 18 wt% H2, are attractive candidates for on-board hydrogen ...
Complex metal hydrides, containing up to 18 wt% H2, are attractive candidates for on-board hydrogen ...
Complex hydrides are mixed ionic-covalent compounds that can serve as reversible H-2 storage media o...
Complex hydrides are mixed ionic-covalent compounds that can serve as reversible H-2 storage media o...
Complex hydrides are salt-like materials in which hydrogen is covalently bound to the central atoms,...
On the basis of density functional theory and coupled-cluster CCSD(T) calculations we propose a mech...
The discovery that hydrogen can be reversibly absorbed and desorbed from complex hydrides (the alana...
A new catalyst has been discovered for the rehydriding of NaH and Al to NaAlH4. The kinetics of this...
A study was conducted to demonstrate titanium (Ti)-based doping in sodium alanate. Proposed mechanis...
Clarification of the nature of active Ti species has been a key challenge in developing Ti-doped NaA...
Complex metal hydrides such as sodium aluminohydride (NaAlH4) and sodium borohydride (NaBH4) are sol...
In the last few decades aluminum hydride (AlH3) and complex aluminum hydrides (M(AlH4)n, where M is ...
The hydrogen storage properties of NaAlH4 mechanically catalyzed with 2 mol % each of the liquid alk...
This report describes research into the use of complex hydrides for hydrogen storage. The synthesis ...
The dehydriding and rehydriding of sodium aluminium hydride, NaAlR4, is kinetically enhanced and ren...
Complex metal hydrides, containing up to 18 wt% H2, are attractive candidates for on-board hydrogen ...
Complex metal hydrides, containing up to 18 wt% H2, are attractive candidates for on-board hydrogen ...
Complex hydrides are mixed ionic-covalent compounds that can serve as reversible H-2 storage media o...
Complex hydrides are mixed ionic-covalent compounds that can serve as reversible H-2 storage media o...
Complex hydrides are salt-like materials in which hydrogen is covalently bound to the central atoms,...
On the basis of density functional theory and coupled-cluster CCSD(T) calculations we propose a mech...
The discovery that hydrogen can be reversibly absorbed and desorbed from complex hydrides (the alana...
A new catalyst has been discovered for the rehydriding of NaH and Al to NaAlH4. The kinetics of this...
A study was conducted to demonstrate titanium (Ti)-based doping in sodium alanate. Proposed mechanis...
Clarification of the nature of active Ti species has been a key challenge in developing Ti-doped NaA...
Complex metal hydrides such as sodium aluminohydride (NaAlH4) and sodium borohydride (NaBH4) are sol...
In the last few decades aluminum hydride (AlH3) and complex aluminum hydrides (M(AlH4)n, where M is ...
The hydrogen storage properties of NaAlH4 mechanically catalyzed with 2 mol % each of the liquid alk...
This report describes research into the use of complex hydrides for hydrogen storage. The synthesis ...
The dehydriding and rehydriding of sodium aluminium hydride, NaAlR4, is kinetically enhanced and ren...
Complex metal hydrides, containing up to 18 wt% H2, are attractive candidates for on-board hydrogen ...
Complex metal hydrides, containing up to 18 wt% H2, are attractive candidates for on-board hydrogen ...