Development of oxide solid electrolytes for all-solid-state batteries is attracting increasing attention. In this study, amorphous Li2O–LiI materials are prepared via a mechanochemical process to achieve high lithium ionic conductivity and good compatibility to lithium metal. Amorphous 66.7Li2O·33.3LiI (mol%) electrolyte shows a high ionic conductivity of 3.1 × 10−5 S cm−1 at 25 °C with a relative density of 96 %. An all-solid-state Li symmetric cell (Li/66.7Li2O·33.3LiI/Li) operates without an increase in overvoltage. A simple combination of lithium oxide and lithium iodide exhibits high ionic conductivity, ductility, and stability to lithium metal
Since the electrification of vehicles has been extended, solid-state batteries have been attracting ...
Solid electrolytes (SEs) are central components that enable high-performance, all-solid-state lithiu...
All-solid-state Li battery containing oxide-class solid electrolyte is considered to be out stand fr...
Essential progress has been made for adopting metal oxides (MeO) in various energy storage and energ...
Essential progress has been made for adopting metal oxides (MeO) in various energy storage and energ...
Essential progress has been made for adopting metal oxides (MeO) in various energy storage and energ...
Solid electrolytes for Li-ion batteries offer large potential to obtain safe batteries and avoid int...
Solid electrolytes with excellent formability and high room-temperature Li-ion conductivities used i...
High lithium ionic conductivity and stability against lithium metal of solid electrolytes are crucia...
Non-crystalline Li-ion solid electrolytes (SEs), such as lithium phosphorus oxynitride, can uniquely...
Rechargeable lithium ion batteries have been widely used in portable consumer electronic devices, hy...
The recently surged halide-based solid electrolytes (SEs) are great candidates for high-performance ...
Solid electrolytes (SEs) are central components that enable high-performance, all-solid-state lithiu...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
Solid electrolytes (SEs) are central components that enable high-performance, all-solid-state lithiu...
Since the electrification of vehicles has been extended, solid-state batteries have been attracting ...
Solid electrolytes (SEs) are central components that enable high-performance, all-solid-state lithiu...
All-solid-state Li battery containing oxide-class solid electrolyte is considered to be out stand fr...
Essential progress has been made for adopting metal oxides (MeO) in various energy storage and energ...
Essential progress has been made for adopting metal oxides (MeO) in various energy storage and energ...
Essential progress has been made for adopting metal oxides (MeO) in various energy storage and energ...
Solid electrolytes for Li-ion batteries offer large potential to obtain safe batteries and avoid int...
Solid electrolytes with excellent formability and high room-temperature Li-ion conductivities used i...
High lithium ionic conductivity and stability against lithium metal of solid electrolytes are crucia...
Non-crystalline Li-ion solid electrolytes (SEs), such as lithium phosphorus oxynitride, can uniquely...
Rechargeable lithium ion batteries have been widely used in portable consumer electronic devices, hy...
The recently surged halide-based solid electrolytes (SEs) are great candidates for high-performance ...
Solid electrolytes (SEs) are central components that enable high-performance, all-solid-state lithiu...
All-solid-state batteries based on non-combustible solid electrolytes are promising candidates for s...
Solid electrolytes (SEs) are central components that enable high-performance, all-solid-state lithiu...
Since the electrification of vehicles has been extended, solid-state batteries have been attracting ...
Solid electrolytes (SEs) are central components that enable high-performance, all-solid-state lithiu...
All-solid-state Li battery containing oxide-class solid electrolyte is considered to be out stand fr...