The ball milling conditions in the preparation of rare earth aluminum hydrides from NaAlH4 and rare earth chlorides have a significant influence on product formation. Defined milling times and appropriate rotational speeds are required to obtain the desired products. It has been shown that starting directly from Na3AlH6 does not lead to the formation of REAlH6. Starting from rare earth iodides instead of chlorides allows dissolution of the alkali metal iodide formed and, therewith, the preparation of salt-free rare earth aluminum hydrides
The recently developed NaAlH4eMgH2 composite shows improved hydrogen-storage properties compared to ...
Rare-earth metals were hydrogenated in the presence of TiCl4 catalyst in tetrahydrofuran (THF) at 45...
NaAlH 4 has been doped with ScCl 3, TiCl 3, CeCl 3, and combinations of these additives by high-ener...
A novel type of complex rare-earth aluminum hydride was prepared by mechanochemical preparation. The...
We describe the ball-milling synthesis of alkali metal deuterides from commercial lithium aluminium ...
Simple mechanochemical procedures can be used for the solid-state preparation of stable complex alum...
WOS: 000416609400004Hydrogen generation by the reaction of Al-NaCl mixtures with water was investiga...
Mechanochemical processing of polycrystalline LiAlH4 revealed good stability of this complex alumino...
Aluminum can react with water and produce hydrogen. Researchers have developed different methods to ...
Some hydrides that could replace TiH2 as the hitherto most suitable blowing agent for foaming alumi...
Some hydrides that could replace TiH2 as the hitherto most suitable blowing agent for foaming alumi...
Some hydrides that could replace TiH2 as the hitherto most suitable blowing agent for foaming alumi...
In the last few decades aluminum hydride (AlH3) and complex aluminum hydrides (M(AlH4)n, where M is ...
Efficient ways of storing renewable energies belong to the major research challenges of our time. Hy...
In most of the Mg–Al alloys, Al forms with Mg the intermetallic compound Mg17Al12. In order to under...
The recently developed NaAlH4eMgH2 composite shows improved hydrogen-storage properties compared to ...
Rare-earth metals were hydrogenated in the presence of TiCl4 catalyst in tetrahydrofuran (THF) at 45...
NaAlH 4 has been doped with ScCl 3, TiCl 3, CeCl 3, and combinations of these additives by high-ener...
A novel type of complex rare-earth aluminum hydride was prepared by mechanochemical preparation. The...
We describe the ball-milling synthesis of alkali metal deuterides from commercial lithium aluminium ...
Simple mechanochemical procedures can be used for the solid-state preparation of stable complex alum...
WOS: 000416609400004Hydrogen generation by the reaction of Al-NaCl mixtures with water was investiga...
Mechanochemical processing of polycrystalline LiAlH4 revealed good stability of this complex alumino...
Aluminum can react with water and produce hydrogen. Researchers have developed different methods to ...
Some hydrides that could replace TiH2 as the hitherto most suitable blowing agent for foaming alumi...
Some hydrides that could replace TiH2 as the hitherto most suitable blowing agent for foaming alumi...
Some hydrides that could replace TiH2 as the hitherto most suitable blowing agent for foaming alumi...
In the last few decades aluminum hydride (AlH3) and complex aluminum hydrides (M(AlH4)n, where M is ...
Efficient ways of storing renewable energies belong to the major research challenges of our time. Hy...
In most of the Mg–Al alloys, Al forms with Mg the intermetallic compound Mg17Al12. In order to under...
The recently developed NaAlH4eMgH2 composite shows improved hydrogen-storage properties compared to ...
Rare-earth metals were hydrogenated in the presence of TiCl4 catalyst in tetrahydrofuran (THF) at 45...
NaAlH 4 has been doped with ScCl 3, TiCl 3, CeCl 3, and combinations of these additives by high-ener...