Solid electrolytes with superionic conductivity are required as a main component for all-solid-state batteries. Here we present a novel solid electrolyte with three-dimensional conducting pathways based on "lithium-rich" phosphidosilicates with ionic conductivity of σ > 10-3 S cm-1 at room temperature and activation energy of 30-32 kJ mol-1 expanding the recently introduced family of lithium phosphidotetrelates. Aiming toward higher lithium ion conductivities, systematic investigations of lithium phosphidosilicates gave access to the so far lithium-richest compound within this class of materials. The crystalline material (space group Fm3m), which shows reversible thermal phase transitions, can be readily obtained by ball mill synthesis from...
Phosphide‐based compounds are promising materials for solid electrolytes. In recent times, a multipl...
While the high energy density of lithium metal has long been a strong driver for the development of ...
To develop solid-state batteries with high power and energy densities, solid electrolytes with fast ...
Solid electrolytes with superionic conductivity are required as a main component for all-solid-state...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
Solid electrolyte materials are crucial for the development of high‐energy‐density all‐solid‐state b...
ABSTRACT: Solid electrolytes that are chemically stable and have a high ionic conductivity would dra...
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...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
Solid-state materials with high ionic conduction are necessary for many technologies, including all-...
All-solid-state Li-ion batteries are promising next-generation energy storage devices for enhanced s...
Phosphide‐based compounds are promising materials for solid electrolytes. In recent times, a multipl...
Phosphide‐based compounds are promising materials for solid electrolytes. In recent times, a multipl...
Phosphide‐based compounds are promising materials for solid electrolytes. In recent times, a multipl...
While the high energy density of lithium metal has long been a strong driver for the development of ...
To develop solid-state batteries with high power and energy densities, solid electrolytes with fast ...
Solid electrolytes with superionic conductivity are required as a main component for all-solid-state...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
Solid electrolyte materials are crucial for the development of high‐energy‐density all‐solid‐state b...
ABSTRACT: Solid electrolytes that are chemically stable and have a high ionic conductivity would dra...
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...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
Solid-state materials with high ionic conduction are necessary for many technologies, including all-...
All-solid-state Li-ion batteries are promising next-generation energy storage devices for enhanced s...
Phosphide‐based compounds are promising materials for solid electrolytes. In recent times, a multipl...
Phosphide‐based compounds are promising materials for solid electrolytes. In recent times, a multipl...
Phosphide‐based compounds are promising materials for solid electrolytes. In recent times, a multipl...
While the high energy density of lithium metal has long been a strong driver for the development of ...
To develop solid-state batteries with high power and energy densities, solid electrolytes with fast ...