LiBH4 has been discussed as a promising hydrogen storage material and as a solid-state electrolyte in lithium-ion batteries. It contains 18.5 wt% hydrogen and undergoes a structural phase transition at 381 K which is associated with a large increase in rotational disorder of the [BH4]− anion and the increase of [Li]+ conductivity by three orders of magnitude. We investigated the [BH4]− anion dynamic in bulk LiBH4, in LiBH4-LiI solid solutions and in nano-confined LiBH4 by quasielastic neutron scattering, complemented by DFT calculations. In all cases the H-dynamics is dominated by thermally activated rotational jumps of the [BH4]− anion in the terahertz range. The addition of LiI as well as nano-confinement favours the disordered high tempe...
The new concept, anion substitution, is explored for possible improvement of hydrogen storage proper...
This work was motivated by the extensive research on lithium solid state materials, which have attra...
The dynamics and bonding of the complex hydrides LiBH4 and LiAlH4 have been investigated by vibratio...
LiBH4 has been discussed as a promising hydrogen storage material and as a solid-state electrolyte i...
Lithiumborohydride (LiBH4) contains 18.5 wt % hydrogen and exhibits a structural phase transition (o...
Lithium amide–borohydrides Li[BH4]1–x[NH2]x possess liquid-like Li superionic conductivity at nearly...
We report on neutron powder-diffraction experiments, inelastic incoherent neutron-scattering experim...
The fast ionic, high temperature (HT) phase of LiBH4 can be stabilised by Br¯ substitution. Lithium ...
The increasing demand for high capacity yet safe storage of renewable energy calls for the developme...
Lithium amide–borohydrides Li[BH<sub>4</sub>]<sub>1–<i>x</i></sub>[NH<sub>2</sub>]<sub><i>x</i></su...
To investigate the dynamical properties of the novel hybrid compound, lithium benzimidazolate-borohy...
The fast ionic, high temperature (HT) phase of LiBH<sub>4</sub> can be stabilized by Br¯ substitutio...
A surprisingly high degree of structural and compositional dynamics is observed in the system LiBH<s...
A Surprisingly high degree of structural and compositional dynamics is observed in the system LiBH4-...
Anion substitution is at present one of the pathways to destabilize metal borohydrides for solid sta...
The new concept, anion substitution, is explored for possible improvement of hydrogen storage proper...
This work was motivated by the extensive research on lithium solid state materials, which have attra...
The dynamics and bonding of the complex hydrides LiBH4 and LiAlH4 have been investigated by vibratio...
LiBH4 has been discussed as a promising hydrogen storage material and as a solid-state electrolyte i...
Lithiumborohydride (LiBH4) contains 18.5 wt % hydrogen and exhibits a structural phase transition (o...
Lithium amide–borohydrides Li[BH4]1–x[NH2]x possess liquid-like Li superionic conductivity at nearly...
We report on neutron powder-diffraction experiments, inelastic incoherent neutron-scattering experim...
The fast ionic, high temperature (HT) phase of LiBH4 can be stabilised by Br¯ substitution. Lithium ...
The increasing demand for high capacity yet safe storage of renewable energy calls for the developme...
Lithium amide–borohydrides Li[BH<sub>4</sub>]<sub>1–<i>x</i></sub>[NH<sub>2</sub>]<sub><i>x</i></su...
To investigate the dynamical properties of the novel hybrid compound, lithium benzimidazolate-borohy...
The fast ionic, high temperature (HT) phase of LiBH<sub>4</sub> can be stabilized by Br¯ substitutio...
A surprisingly high degree of structural and compositional dynamics is observed in the system LiBH<s...
A Surprisingly high degree of structural and compositional dynamics is observed in the system LiBH4-...
Anion substitution is at present one of the pathways to destabilize metal borohydrides for solid sta...
The new concept, anion substitution, is explored for possible improvement of hydrogen storage proper...
This work was motivated by the extensive research on lithium solid state materials, which have attra...
The dynamics and bonding of the complex hydrides LiBH4 and LiAlH4 have been investigated by vibratio...