Hydrogen substitution by fluorine in the orthorhombic phase of LiBH4 has been investigated with quantum-mechanics calculations aiming at describing thermodynamic properties of LiB(H,F)(4) solid solutions for hydrogen storage applications. Excess enthalpy of the mixed compounds was computed with the periodic ab initio CRYSTAL09 code, within the density functional approach and localised Gaussian basis sets, and used for Calphad thermodynamic modelling. The large number of possible mixed configurations for a given fluorine content were reduced by symmetry equivalence criteria. Deep analysis of the results highlights the relevance of structures in which, for a given H/F ratio, fluorine ions are likely to belong to the same BH4 tetrahedron, rath...
Complex hydrides are promising hydrogen storage materials and have received significant attention du...
A Surprisingly high degree of structural and compositional dynamics is observed in the system LiBH4-...
In an effort to develop reversible metal borohydrides with high hydrogen storage capacities and low ...
Anion substitution is at present one of the pathways to destabilize metal borohydrides for solid sta...
We report density functional theory calculations on the energy of LiBH 4, relative to solid B and Li...
A clear description of the paths of thermal decomposition of complex borohydrides represents a cruci...
The new concept, anion substitution, is explored for possible improvement of hydrogen storage proper...
First-principles calculation and x-ray diffraction simulation methods have been used to explore crys...
A lithium salt of anionic scandium tetraborohydride complex, LiSc(BH_4)_4, was studied both experime...
Lithium borohydride (LiBH4) has been attracting extensive attention as an exemplary high‐capacity co...
The application of hydrogen as a clean energy source is based on storage of hydrogen. In metal hydri...
Borohydrides such as LiBH{sub 4} have been studied as candidates for hydrogen storage because of the...
In this work, ab initio density functional calculations were performed to explore the effect of surf...
WOS: 000469349900059LiBH4 which have attracted considerable attention from researchers due to the cr...
Hydrogen-fluorine exchange in the NaBH4–NaBF4 system is investigated with a range of experimental me...
Complex hydrides are promising hydrogen storage materials and have received significant attention du...
A Surprisingly high degree of structural and compositional dynamics is observed in the system LiBH4-...
In an effort to develop reversible metal borohydrides with high hydrogen storage capacities and low ...
Anion substitution is at present one of the pathways to destabilize metal borohydrides for solid sta...
We report density functional theory calculations on the energy of LiBH 4, relative to solid B and Li...
A clear description of the paths of thermal decomposition of complex borohydrides represents a cruci...
The new concept, anion substitution, is explored for possible improvement of hydrogen storage proper...
First-principles calculation and x-ray diffraction simulation methods have been used to explore crys...
A lithium salt of anionic scandium tetraborohydride complex, LiSc(BH_4)_4, was studied both experime...
Lithium borohydride (LiBH4) has been attracting extensive attention as an exemplary high‐capacity co...
The application of hydrogen as a clean energy source is based on storage of hydrogen. In metal hydri...
Borohydrides such as LiBH{sub 4} have been studied as candidates for hydrogen storage because of the...
In this work, ab initio density functional calculations were performed to explore the effect of surf...
WOS: 000469349900059LiBH4 which have attracted considerable attention from researchers due to the cr...
Hydrogen-fluorine exchange in the NaBH4–NaBF4 system is investigated with a range of experimental me...
Complex hydrides are promising hydrogen storage materials and have received significant attention du...
A Surprisingly high degree of structural and compositional dynamics is observed in the system LiBH4-...
In an effort to develop reversible metal borohydrides with high hydrogen storage capacities and low ...