The destabilization approach for SiO2-doped LiBH4 hydrogen storage composite is identified as 4LiBH(4) + 2SiO(2) -> Li4SiO4 + 4B + Si + 8H(2), and Li4SiO4 is the thermodynamic obstacle for its reverse action. TiF3 was doped in the composite for avoiding the formation of Li4SiO4 and thus enhancing the reversible hydrogen storage properties. Experimental analysis on LiBH4-SiO2-TiF3 composite was performed via thermogravimetry (TG), temperature programmed desorption (TPD), mass spectral analysis (MS), differential scanning calorimetry (DSC), isothermal sorption, and powder X-ray diffraction (XRD). For LiBH4-20 wt % SiO2-30 wt % TiF3 composite, the dehydrogenation temperature starts from 70 degrees C and decreases by an average of 100 degrees C...
The demands on Hydrogen fuel based technologies is ever increasing for substitution or replacing fos...
The 6Mg(NH2)2-9LiH-LiBH4 composite system has a maximum reversible hydrogen content of 4.2 wt% and a...
The demands on Hydrogen fuel based technologies is ever increasing for substitution or replacing fos...
The hydrogen storage properties of LiBH4 ball milled with TiF3 were investigated. It was found that ...
The Mg10YNi alloy was hydrogenated and then coupled with LiBH4 to form LiBH4/Mg10YNi-H reactive hydr...
Mg-10 mol% LiBH4 composite plus small amounts of FeF3 is investigated in the present work. The prese...
LiF-MgB2 composites are proposed for reversible hydrogen storage. With respect to pure LiBH4, a sign...
The LiBH4 + mesoporous Fe2O3 (defined as M-Fe2O3) mono-doped and LiBH4 + M-Fe2O3 + TiF3 co-doped hyb...
The influence of different titanium additives on hydrogen sorption in LiH–MgB2 system has been inves...
2Mg(NH2)(2)-3LiH-LiBH4 composite exhibits an improved kinetic and thermodynamic properties in hydrog...
In this work we investigated the effect of Ti, TiH2, TiB2, TiCl3, and. TiF3 additives on the hydroge...
In an effort to develop reversible metal borohydrides with high hydrogen storage capacities and low ...
LiBH4 is a promising material to store hydrogen because of its interesting characteristics. It has h...
In an effort to develop reversible metal borohydrides with high hydrogen storage capacities and low ...
In a previous paper, it was demonstrated that a MgH2–NaAlH4 composite system had improved dehydrogen...
The demands on Hydrogen fuel based technologies is ever increasing for substitution or replacing fos...
The 6Mg(NH2)2-9LiH-LiBH4 composite system has a maximum reversible hydrogen content of 4.2 wt% and a...
The demands on Hydrogen fuel based technologies is ever increasing for substitution or replacing fos...
The hydrogen storage properties of LiBH4 ball milled with TiF3 were investigated. It was found that ...
The Mg10YNi alloy was hydrogenated and then coupled with LiBH4 to form LiBH4/Mg10YNi-H reactive hydr...
Mg-10 mol% LiBH4 composite plus small amounts of FeF3 is investigated in the present work. The prese...
LiF-MgB2 composites are proposed for reversible hydrogen storage. With respect to pure LiBH4, a sign...
The LiBH4 + mesoporous Fe2O3 (defined as M-Fe2O3) mono-doped and LiBH4 + M-Fe2O3 + TiF3 co-doped hyb...
The influence of different titanium additives on hydrogen sorption in LiH–MgB2 system has been inves...
2Mg(NH2)(2)-3LiH-LiBH4 composite exhibits an improved kinetic and thermodynamic properties in hydrog...
In this work we investigated the effect of Ti, TiH2, TiB2, TiCl3, and. TiF3 additives on the hydroge...
In an effort to develop reversible metal borohydrides with high hydrogen storage capacities and low ...
LiBH4 is a promising material to store hydrogen because of its interesting characteristics. It has h...
In an effort to develop reversible metal borohydrides with high hydrogen storage capacities and low ...
In a previous paper, it was demonstrated that a MgH2–NaAlH4 composite system had improved dehydrogen...
The demands on Hydrogen fuel based technologies is ever increasing for substitution or replacing fos...
The 6Mg(NH2)2-9LiH-LiBH4 composite system has a maximum reversible hydrogen content of 4.2 wt% and a...
The demands on Hydrogen fuel based technologies is ever increasing for substitution or replacing fos...