Aliovalent substitution is a common strategy to improve the ionic conductivity of solid electrolytes for solid-state batteries. The substitution of SbS43– by WS42– in Na2.9Sb0.9W0.1S4 leads to a very high ionic conductivity of 41 mS cm–1 at room temperature. While pristine Na3SbS4 crystallizes in a tetragonal structure, the substituted Na2.9Sb0.9W0.1S4 crystallizes in a cubic phase at room temperature based on its X-ray diffractogram. Here, we show by performing pair distribution function analyses and static single-pulse 121Sb NMR experiments that the short-range order of Na2.9Sb0.9W0.1S4 remains tetragonal despite the change in the Bragg diffraction pattern. Temperature-dependent Raman spectroscopy revealed that changed lattice dynamics du...
Highly conductive solid electrolytes are fundamental for all solid-state batteries with low inner ce...
The discovery of numerous superionic conductors has accelerated the development of solid-state energ...
The discovery of numerous superionic conductors has accelerated the development of solid-state energ...
Aliovalent substitution is a common strategy to improve the ionic conductivity of solid electrolytes...
Aliovalent substitution is a common strategy to improve the ionic conductivity of solid electrolytes...
In the last couple of years, a major breakthrough has been achieved as several antimony-based sodium...
In the last couple of years, a major breakthrough has been achieved as several antimony-based sodium...
International audienceHighly conductive solid electrolytes are fundamental for all solid-state batte...
International audienceHighly conductive solid electrolytes are fundamental for all solid-state batte...
International audienceHighly conductive solid electrolytes are fundamental for all solid-state batte...
International audienceHighly conductive solid electrolytes are fundamental for all solid-state batte...
International audienceHighly conductive solid electrolytes are fundamental for all solid-state batte...
In the last couple of years, a major breakthrough has been achieved as several antimony-based sodium...
Highly conductive solid electrolytes are fundamental for all solid-state batteries with low inner ce...
International audienceHighly conductive solid electrolytes are fundamental for all solid-state batte...
Highly conductive solid electrolytes are fundamental for all solid-state batteries with low inner ce...
The discovery of numerous superionic conductors has accelerated the development of solid-state energ...
The discovery of numerous superionic conductors has accelerated the development of solid-state energ...
Aliovalent substitution is a common strategy to improve the ionic conductivity of solid electrolytes...
Aliovalent substitution is a common strategy to improve the ionic conductivity of solid electrolytes...
In the last couple of years, a major breakthrough has been achieved as several antimony-based sodium...
In the last couple of years, a major breakthrough has been achieved as several antimony-based sodium...
International audienceHighly conductive solid electrolytes are fundamental for all solid-state batte...
International audienceHighly conductive solid electrolytes are fundamental for all solid-state batte...
International audienceHighly conductive solid electrolytes are fundamental for all solid-state batte...
International audienceHighly conductive solid electrolytes are fundamental for all solid-state batte...
International audienceHighly conductive solid electrolytes are fundamental for all solid-state batte...
In the last couple of years, a major breakthrough has been achieved as several antimony-based sodium...
Highly conductive solid electrolytes are fundamental for all solid-state batteries with low inner ce...
International audienceHighly conductive solid electrolytes are fundamental for all solid-state batte...
Highly conductive solid electrolytes are fundamental for all solid-state batteries with low inner ce...
The discovery of numerous superionic conductors has accelerated the development of solid-state energ...
The discovery of numerous superionic conductors has accelerated the development of solid-state energ...