All-solid-state batteries that employ superionic solid conductor potentially enable the broadening of battery operation in harsh environments, such as under subzero temperatures and even lower. The solid electrolyte as the key component requires structural stability, high-efficiency of ion transportation channels, and low activation energy to maintain the fast-ionic conduction against temperature drop. Herein, we use 3D superionic conductor Na3SbS4 as a model to investigate the structure and conductive mechanism at extremely low temperature. Cryogenic in situ neutron and X-ray diffractions reveal that Na3SbS4 maintains a stable tetragonal crystal structure and the anisotropic lattice contraction upon cooling. The dimensions of the S-gate (r...
Abstract Motivated by the high-performance solid-state lithium batteries enabled by lithium superion...
Inorganic solid-state ionic conductors with high ionic conductivity are of great interest for their ...
Sulfide Na-ion solid electrolytes (SEs) are key to enable room-temperature operable all-solid-state ...
All-solid-state sodium-ion batteries that operate at room temperature are attractive candidates for ...
Solid electrolytes are crucial for next‑generation solid‑state batteries and Na3PS4 is one of the ...
The discovery of numerous superionic conductors has accelerated the development of solid-state energ...
All-solid-state Na-ion batteries that operate at or close to room temperature are a promising next-g...
Bulk-type all-solid-state Na-ion batteries (ASNBs) employing inorganic Na-ion conductors and operati...
Mechanically sinterable sulfide Na+ superionic conductors are key to enabling room-temperature-opera...
Na3PS4 is one of the most promising Na+ conductors, relevant for applications that can leverage its ...
All-solid-state Na-ion batteries that operate at or close to room temperature are a promising next-g...
Rechargeable lithium ion batteries have ruled the consumer electronics market for the past 20 years ...
Aliovalent substitution is a common strategy to improve the ionic conductivity of solid electrolytes...
Abstract Motivated by the high-performance solid-state lithium batteries enabled by lithium superion...
Inorganic solid-state ionic conductors with high ionic conductivity are of great interest for their ...
Sulfide Na-ion solid electrolytes (SEs) are key to enable room-temperature operable all-solid-state ...
All-solid-state sodium-ion batteries that operate at room temperature are attractive candidates for ...
Solid electrolytes are crucial for next‑generation solid‑state batteries and Na3PS4 is one of the ...
The discovery of numerous superionic conductors has accelerated the development of solid-state energ...
All-solid-state Na-ion batteries that operate at or close to room temperature are a promising next-g...
Bulk-type all-solid-state Na-ion batteries (ASNBs) employing inorganic Na-ion conductors and operati...
Mechanically sinterable sulfide Na+ superionic conductors are key to enabling room-temperature-opera...
Na3PS4 is one of the most promising Na+ conductors, relevant for applications that can leverage its ...
All-solid-state Na-ion batteries that operate at or close to room temperature are a promising next-g...
Rechargeable lithium ion batteries have ruled the consumer electronics market for the past 20 years ...
Aliovalent substitution is a common strategy to improve the ionic conductivity of solid electrolytes...
Abstract Motivated by the high-performance solid-state lithium batteries enabled by lithium superion...
Inorganic solid-state ionic conductors with high ionic conductivity are of great interest for their ...
Sulfide Na-ion solid electrolytes (SEs) are key to enable room-temperature operable all-solid-state ...