Oxide and sulphide solid electrolyte materials have enjoyed significant interest in the solid-state battery community. Phosphide materials however are relatively unexplored despite the potential for being high lithium containing systems. This work reports on the phosphidosilicate system Li2SiP2, one of many systems in the Li-Si-P phase diagram. The phosphidosilicates display complex structures and very large unit cells, which present challenges for ab initio simulations. We present the first computational report on the theoretical ionic conductivity and related diffusion mechanisms of the material Li2SiP2 , selected due to it's unusual supertetrahedral framework which is a recurrent motif amongst the phosphidosilicates. Group 13 dopants ha...
Rechargeable all-solid-state batteries (ASSBs) are traded as next-generation power sources for mobil...
Here, we examine the intrinsic ion conduction properties of Li7P3S11-type materials, one of the impo...
Solid electrolytes that are chemically stable and have a high ionic conductivity would dramatically ...
Oxide and sulphide solid electrolyte materials have enjoyed significant interest in the solid-state ...
Solid electrolytes with superionic conductivity are required as a main component for all-solid-state...
Solid electrolytes with superionic conductivity are required as a main component for all-solid-state...
ABSTRACT: Solid electrolytes that are chemically stable and have a high ionic conductivity would dra...
Here, we examine the intrinsic ion conduction properties of Li7P3S11-type materials, one of the impo...
Here, we examine the intrinsic ion conduction properties of Li7P3S11-type materials, one of the impo...
Batteries, and in particular lithium ion batteries, are widely used energy storage and supply system...
Rechargeable all-solid-state batteries (ASSBs) are traded as next-generation power sources for mobil...
Rechargeable all-solid-state batteries (ASSBs) are traded as next-generation power sources for mobil...
Rechargeable all-solid-state batteries (ASSBs) are traded as next-generation power sources for mobil...
Rechargeable all-solid-state batteries (ASSBs) are traded as next-generation power sources for mobil...
All-solid-state Li-ion batteries are promising next-generation energy storage devices for enhanced s...
Rechargeable all-solid-state batteries (ASSBs) are traded as next-generation power sources for mobil...
Here, we examine the intrinsic ion conduction properties of Li7P3S11-type materials, one of the impo...
Solid electrolytes that are chemically stable and have a high ionic conductivity would dramatically ...
Oxide and sulphide solid electrolyte materials have enjoyed significant interest in the solid-state ...
Solid electrolytes with superionic conductivity are required as a main component for all-solid-state...
Solid electrolytes with superionic conductivity are required as a main component for all-solid-state...
ABSTRACT: Solid electrolytes that are chemically stable and have a high ionic conductivity would dra...
Here, we examine the intrinsic ion conduction properties of Li7P3S11-type materials, one of the impo...
Here, we examine the intrinsic ion conduction properties of Li7P3S11-type materials, one of the impo...
Batteries, and in particular lithium ion batteries, are widely used energy storage and supply system...
Rechargeable all-solid-state batteries (ASSBs) are traded as next-generation power sources for mobil...
Rechargeable all-solid-state batteries (ASSBs) are traded as next-generation power sources for mobil...
Rechargeable all-solid-state batteries (ASSBs) are traded as next-generation power sources for mobil...
Rechargeable all-solid-state batteries (ASSBs) are traded as next-generation power sources for mobil...
All-solid-state Li-ion batteries are promising next-generation energy storage devices for enhanced s...
Rechargeable all-solid-state batteries (ASSBs) are traded as next-generation power sources for mobil...
Here, we examine the intrinsic ion conduction properties of Li7P3S11-type materials, one of the impo...
Solid electrolytes that are chemically stable and have a high ionic conductivity would dramatically ...