NaAlH4 was melt infiltrated within a CO2 activated carbon aerogel, which had been preloaded with TiCl3. Nanoconfinement was verified by Small Angle X Ray Scattering SAXS and the nature of the Ti was investigated with Anomalous SAXS ASAXS and X Ray Absorption Near Edge Structure XANES to determine its size and chemical state. The Ti is found to be in a similar state to that found in the bulk Ti doped NaAlH4 system where it exists as Al1 xTix nanoalloys. Crystalline phases exist within the carbon aerogel pores, which are analysed by in situ Powder X Ray Diffraction PXD during hydrogen cycling. The in situ data reveals that the hydrogen release from NaAlH4 and its hydrogen uptake occurs through the Na3AlH6 intermediate when confined at...
Hydrogen storage properties of Ti-doped nanosized (similar to 20 nm) NaAlH4 supported on carbon nano...
Hydrogen storage properties of Ti-doped nanosized (20 nm) NaAlH4 supported on carbon nanofibers were...
In the search for suitable solid state hydrogen storage systems, NaAlH4 (7.4 wt % H2) holds great pr...
NaAlH4 was melt infiltrated within a CO2 activated carbon aerogel, which had been preloaded with TiC...
NaAlH4 was melt infiltrated within a CO2 activated carbon aerogel, which had been preloaded with TiC...
Copyright © 2015 Hydrogen Energy Publications, LLC.NaAlH4 was melt infiltrated within a CO2 activate...
NaAlH4 was melt infiltrated within a CO2 activated carbon aerogel, which had been preloaded with TiC...
The hydrogen (H) cycled planetary milled (PM) NaAlH4 + 0.02TiCl3 system has been studied by high res...
The nature of the active Ti species in TiCl3-doped NaAlH4, a promising hydrogen storage material, wa...
The nature of the active Ti species in TiCl3-doped NaAlH4, a promising hydrogen storage material, wa...
The nature of the active Ti species in TiCl3-doped NaAlH4, a promising hydrogen storage material, wa...
The nature of the active Ti species in TiCl3-doped NaAlH4, a promising hydrogen storage material, wa...
Nanoconfinement is a new method to improve the hydrogen storage properties for metal hydrides. A sys...
Metal hydrides are likely candidates for the solid state storage of hydrogen. NaAlH4 is the only com...
Clarification of the nature of active Ti species has been a key challenge in developing Ti-doped NaA...
Hydrogen storage properties of Ti-doped nanosized (similar to 20 nm) NaAlH4 supported on carbon nano...
Hydrogen storage properties of Ti-doped nanosized (20 nm) NaAlH4 supported on carbon nanofibers were...
In the search for suitable solid state hydrogen storage systems, NaAlH4 (7.4 wt % H2) holds great pr...
NaAlH4 was melt infiltrated within a CO2 activated carbon aerogel, which had been preloaded with TiC...
NaAlH4 was melt infiltrated within a CO2 activated carbon aerogel, which had been preloaded with TiC...
Copyright © 2015 Hydrogen Energy Publications, LLC.NaAlH4 was melt infiltrated within a CO2 activate...
NaAlH4 was melt infiltrated within a CO2 activated carbon aerogel, which had been preloaded with TiC...
The hydrogen (H) cycled planetary milled (PM) NaAlH4 + 0.02TiCl3 system has been studied by high res...
The nature of the active Ti species in TiCl3-doped NaAlH4, a promising hydrogen storage material, wa...
The nature of the active Ti species in TiCl3-doped NaAlH4, a promising hydrogen storage material, wa...
The nature of the active Ti species in TiCl3-doped NaAlH4, a promising hydrogen storage material, wa...
The nature of the active Ti species in TiCl3-doped NaAlH4, a promising hydrogen storage material, wa...
Nanoconfinement is a new method to improve the hydrogen storage properties for metal hydrides. A sys...
Metal hydrides are likely candidates for the solid state storage of hydrogen. NaAlH4 is the only com...
Clarification of the nature of active Ti species has been a key challenge in developing Ti-doped NaA...
Hydrogen storage properties of Ti-doped nanosized (similar to 20 nm) NaAlH4 supported on carbon nano...
Hydrogen storage properties of Ti-doped nanosized (20 nm) NaAlH4 supported on carbon nanofibers were...
In the search for suitable solid state hydrogen storage systems, NaAlH4 (7.4 wt % H2) holds great pr...