The fast ionic, high temperature (HT) phase of LiBH4 can be stabilised by Br¯ substitution. Lithium borohydride bromide compounds, Li(BH4)1-xBrx have been synthesized mechanochemically, with and without thermal treatment and the resulting phase behaviour determined as a function of composition. Single phase materials exist for 0.29 ≤ x ≤ 0.50 with conductivity two orders of magnitude higher than LiBH4 at 313 K. Powder neutron diffraction has been used to resolve the details of the crystal structure of one such compound. These demonstrate that 7Li(11BD4)2/3Br1/3 retains the HT structure (hexagonal space group P63mc, a ≈ 4.2 Å, c ≈ 6.7 Å) from 293-573 K. The borohydride bromide exhibits considerable static and dynamic disorder, the latter inv...
The new concept, anion substitution, is explored for possible improvement of hydrogen storage proper...
We performed first-principles density-functional theory calculations to investigate the structural p...
Anion substitution is at present one of the pathways to destabilize metal borohydrides for solid sta...
The fast ionic, high temperature (HT) phase of LiBH<sub>4</sub> can be stabilized by Br¯ substitutio...
The fast ionic, high temperature (HT) phase of LiBH4 can be stabilised by Br¯ substitution. Lithium ...
A Surprisingly high degree of structural and compositional dynamics is observed in the system LiBH4-...
We report on neutron powder-diffraction experiments, inelastic incoherent neutron-scattering experim...
A combination of synchrotron X-ray diffraction techniques have been applied to resolve ambiguities b...
A combination of synchrotron X-ray diffraction techniques have been applied to resolve ambiguities b...
This study shows a flexible system that offers promising candidates for Li-based solid-state electro...
A surprisingly high degree of structural and compositional dynamics is observed in the system LiBH<s...
This work was motivated by the extensive research on lithium solid state materials, which have attra...
LiBH4 has been discussed as a promising hydrogen storage material and as a solid-state electrolyte i...
The pressure evolution of RbBH4 has been characterized by synchrotron powder X-ray diffraction and R...
The phase diagram LiBH4-ABH4 (A = Rb,Cs) has been screened and revealed ten new compounds LiiAj(BH4)...
The new concept, anion substitution, is explored for possible improvement of hydrogen storage proper...
We performed first-principles density-functional theory calculations to investigate the structural p...
Anion substitution is at present one of the pathways to destabilize metal borohydrides for solid sta...
The fast ionic, high temperature (HT) phase of LiBH<sub>4</sub> can be stabilized by Br¯ substitutio...
The fast ionic, high temperature (HT) phase of LiBH4 can be stabilised by Br¯ substitution. Lithium ...
A Surprisingly high degree of structural and compositional dynamics is observed in the system LiBH4-...
We report on neutron powder-diffraction experiments, inelastic incoherent neutron-scattering experim...
A combination of synchrotron X-ray diffraction techniques have been applied to resolve ambiguities b...
A combination of synchrotron X-ray diffraction techniques have been applied to resolve ambiguities b...
This study shows a flexible system that offers promising candidates for Li-based solid-state electro...
A surprisingly high degree of structural and compositional dynamics is observed in the system LiBH<s...
This work was motivated by the extensive research on lithium solid state materials, which have attra...
LiBH4 has been discussed as a promising hydrogen storage material and as a solid-state electrolyte i...
The pressure evolution of RbBH4 has been characterized by synchrotron powder X-ray diffraction and R...
The phase diagram LiBH4-ABH4 (A = Rb,Cs) has been screened and revealed ten new compounds LiiAj(BH4)...
The new concept, anion substitution, is explored for possible improvement of hydrogen storage proper...
We performed first-principles density-functional theory calculations to investigate the structural p...
Anion substitution is at present one of the pathways to destabilize metal borohydrides for solid sta...