The influence of space-charge layers on the ionic charge transport over cathode-solid electrolyte interfaces in all-solid-state batteries remains unclear because of the difficulty to unravel it from other contributions to the ion transport over the interfaces. Here, we reveal the effect of the space-charge layers by systematically tuning the space-charge layer on and off between Li xV 2O 5 and Li 1.5Al 0.5Ge 1.5(PO 3) 4 (LAGP), by changing the Li xV 2O 5 potential and selectively measuring the ion transport over the interface by two-dimensional (2D) NMR exchange. The activation energy is demonstrated to be 0.315 eV for lithium-ion exchange over the space-charge-free interface, which increases dramatically to 0.515 eV for the interface with ...
Development of all-solid-state batteries requires stable solid electrolyte-electrode interfaces. Her...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
The influence of space-charge layers on the ionic charge transport over cathode-solid electrolyte in...
All-solid-state batteries (ASSBs) have been considered next-generation energy storage. However, spac...
All-solid state batteries have the promise to increase the safety of Li-ion batteries. A prerequisit...
Lithium-ion batteries have attracted extensive research attention in the past decades, and have beco...
Lithium-ion batteries have attracted extensive research attention in the past decades, and have beco...
A key challenge for solid-state-batteries development is to design electrode-electrolyte interfaces ...
A key challenge for solid-state-batteries development is to design electrode-electrolyte interfaces ...
Solid-state batteries potentially offer increased lithium-ion battery energy density and safety as r...
In this paper, we report the surprisingly low electrolyte/electrode interface resistance of 8.6 Ω cm...
The electrochemical potential difference (Δμ¯) is the driving force for the transfer of a charged sp...
The electrochemical potential difference (Δμ¯) is the driving force for the transfer of a charged sp...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Development of all-solid-state batteries requires stable solid electrolyte-electrode interfaces. Her...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
The influence of space-charge layers on the ionic charge transport over cathode-solid electrolyte in...
All-solid-state batteries (ASSBs) have been considered next-generation energy storage. However, spac...
All-solid state batteries have the promise to increase the safety of Li-ion batteries. A prerequisit...
Lithium-ion batteries have attracted extensive research attention in the past decades, and have beco...
Lithium-ion batteries have attracted extensive research attention in the past decades, and have beco...
A key challenge for solid-state-batteries development is to design electrode-electrolyte interfaces ...
A key challenge for solid-state-batteries development is to design electrode-electrolyte interfaces ...
Solid-state batteries potentially offer increased lithium-ion battery energy density and safety as r...
In this paper, we report the surprisingly low electrolyte/electrode interface resistance of 8.6 Ω cm...
The electrochemical potential difference (Δμ¯) is the driving force for the transfer of a charged sp...
The electrochemical potential difference (Δμ¯) is the driving force for the transfer of a charged sp...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Development of all-solid-state batteries requires stable solid electrolyte-electrode interfaces. Her...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...
Extensive efforts have been made to improve the Li-ionic conductivity of solid electrolytes (SE) for...