The aim of this study is the synthesis of hydrogen storage compounds by electrodeoxidation technique which offers an inexpensive and rapid route to synthesize compounds from oxide mixtures. Within the scope of this study, two hydrogen storage compounds, FeTi and Mg2Ni, are aimed to be produced by this technique. In the first part, effect of sintering conditions on synthesis of FeTi was studied. For this purpose, oxide pellets made out of Fe2O3-TiO2 powders were sintered at temperatures between 900 °C – 1300 °C. Experiments showed that by sintering at 1100 °C, Fe2TiO5 forms and particle size remains comparatively small, which improve the reducibility of the oxide pellet. Experimental studies showed that the reduction of MgO rich MgO-NiO oxid...
Mg-Ni system draws attention due to the promising hydrogen storage properties of Mg2Ni. The proposed...
The catalytic/destabilizing effect of different metals and metal oxides on the hydrogen sorption pro...
This study was motivated by a desire to understand more about the performance of Ti2Ni hydrogen stor...
Mg2Ni is a well-known hydrogen storage alloy. Most of the preparative methods for this alloy require...
The development of low cost titanium metal production processes has challenged the Ti research and i...
A study was carried out on the synthesis of FeTi intermetallics from mixed oxide precursors using th...
Mg2Ni is a well-known hydrogen storage alloy. Most of the preparative methods for this alloy require...
Results on mechanical alloying of binary and ternary Mg-Ti-based mixtures are reported. Using fine-p...
MgH2 is considered to be one of the most promising options for a solid state hydrogen storage materi...
Mg-based hydrogen storage alloys are promising candidates for many hydrogen storage applications bec...
Reactive metals including Ti, Zr, Hf, and V, among others, have a strong chemical affinity to oxygen...
In order to improve the hydrogen-storage properties of magnesium, oxides, metallic element(s) and a ...
The abundant metal Ti is a high-quality metal with lightweight, high strength, and corrosion resista...
Results of the mechanical alloying of binary Mg–Ti and ternary Mg–Ti–Ni mixtures using two different...
A combinatorial study was carried out for hydrogen storage alloys which involve processes similar to...
Mg-Ni system draws attention due to the promising hydrogen storage properties of Mg2Ni. The proposed...
The catalytic/destabilizing effect of different metals and metal oxides on the hydrogen sorption pro...
This study was motivated by a desire to understand more about the performance of Ti2Ni hydrogen stor...
Mg2Ni is a well-known hydrogen storage alloy. Most of the preparative methods for this alloy require...
The development of low cost titanium metal production processes has challenged the Ti research and i...
A study was carried out on the synthesis of FeTi intermetallics from mixed oxide precursors using th...
Mg2Ni is a well-known hydrogen storage alloy. Most of the preparative methods for this alloy require...
Results on mechanical alloying of binary and ternary Mg-Ti-based mixtures are reported. Using fine-p...
MgH2 is considered to be one of the most promising options for a solid state hydrogen storage materi...
Mg-based hydrogen storage alloys are promising candidates for many hydrogen storage applications bec...
Reactive metals including Ti, Zr, Hf, and V, among others, have a strong chemical affinity to oxygen...
In order to improve the hydrogen-storage properties of magnesium, oxides, metallic element(s) and a ...
The abundant metal Ti is a high-quality metal with lightweight, high strength, and corrosion resista...
Results of the mechanical alloying of binary Mg–Ti and ternary Mg–Ti–Ni mixtures using two different...
A combinatorial study was carried out for hydrogen storage alloys which involve processes similar to...
Mg-Ni system draws attention due to the promising hydrogen storage properties of Mg2Ni. The proposed...
The catalytic/destabilizing effect of different metals and metal oxides on the hydrogen sorption pro...
This study was motivated by a desire to understand more about the performance of Ti2Ni hydrogen stor...