The dehydrogenation properties of LiAlH4 doped with different Ti precursors (Ti, TiO2, and TiCl3) via ball milling are investigated. The results not only show significant decreases in the decomposition temperatures (T-dec) and activation energies (E-A) of the first two dehydrogenation reaction steps of LiAlH4 by doping with TiO2 or TiCl3, but also reveal how each Ti precursor affects the dehydrogenation process. Although doping LiAlH4 with TiCl3 induced the largest decrease in T-dec and E-A, TiO2-doped LiAlH4 produced a decrease in T-dec and E-A that is quite close to the TiCl3-doped sample as well as superior short-term stability, suggesting that doping with TiO2 has certain advantages over doping with TiCl3. Further, the underlying mechan...
Metal hydrides are attractive materials for use in thermal storage systems to manage excessive trans...
The catalytic effect of two nanoscale transition metal oxides, Fe2O3 and Co2O3, as additives on the ...
The catalytic effect of two nanoscale transition metal oxides, Fe2O3 and Co2O3, as additives on the ...
The dehydrogenation properties of LiAlH<sub>4</sub> doped with different Ti precursors (Ti, TiO<sub>...
The effects of K2TiF6 on the dehydrogenation properties of LiAlH4 were investigated by solid-state b...
The effects of TiO2 nanopowder addition on the dehydrogenation behaviour of LiAlH4 have been studied...
This document has been made available through Purdue e-Pubs, a service of the Purdue University Libr...
In the present work, the catalytic effect of TiF3 on the dehydrogenation properties of LiAlH4 has be...
The effects of various catalysts on the hydrogen release characteristics of LiAlH4 were studied. The...
The effects of various catalysts on the hydrogen release characteristics of LiAlH4 were studied. The...
To investigate the effect of NiCl2 dopant and doping processes on the dehydrogenation behavior of Li...
Metal hydrides are attractive materials for use in thermal storage systems to manage excessive trans...
Mechanical processing of polycrystalline LiAlH4 in the presence of titanium- and iron-based catalyst...
For Li3AlH6 prepared by mechanical milling method, the dissociation reaction enthalpy and activation...
The effects of metal oxide nanopowder (Fe2O3, Cr2O3, ZnO and MoO3) additions by dry ball milling on ...
Metal hydrides are attractive materials for use in thermal storage systems to manage excessive trans...
The catalytic effect of two nanoscale transition metal oxides, Fe2O3 and Co2O3, as additives on the ...
The catalytic effect of two nanoscale transition metal oxides, Fe2O3 and Co2O3, as additives on the ...
The dehydrogenation properties of LiAlH<sub>4</sub> doped with different Ti precursors (Ti, TiO<sub>...
The effects of K2TiF6 on the dehydrogenation properties of LiAlH4 were investigated by solid-state b...
The effects of TiO2 nanopowder addition on the dehydrogenation behaviour of LiAlH4 have been studied...
This document has been made available through Purdue e-Pubs, a service of the Purdue University Libr...
In the present work, the catalytic effect of TiF3 on the dehydrogenation properties of LiAlH4 has be...
The effects of various catalysts on the hydrogen release characteristics of LiAlH4 were studied. The...
The effects of various catalysts on the hydrogen release characteristics of LiAlH4 were studied. The...
To investigate the effect of NiCl2 dopant and doping processes on the dehydrogenation behavior of Li...
Metal hydrides are attractive materials for use in thermal storage systems to manage excessive trans...
Mechanical processing of polycrystalline LiAlH4 in the presence of titanium- and iron-based catalyst...
For Li3AlH6 prepared by mechanical milling method, the dissociation reaction enthalpy and activation...
The effects of metal oxide nanopowder (Fe2O3, Cr2O3, ZnO and MoO3) additions by dry ball milling on ...
Metal hydrides are attractive materials for use in thermal storage systems to manage excessive trans...
The catalytic effect of two nanoscale transition metal oxides, Fe2O3 and Co2O3, as additives on the ...
The catalytic effect of two nanoscale transition metal oxides, Fe2O3 and Co2O3, as additives on the ...