Development of all-solid-state batteries requires stable solid electrolyte-electrode interfaces. Here, via exchange-NMR measurements, the authors investigate the positive electrode-solid electrolyte interface, revealing the impact of an inorganic coating on the Li-ion transport properties
The development of novel electrolyte materials for lithium ion batteries has been the focus of much ...
Lithium metal anodes offer a huge leap in the energy density of batteries, yet their implementation ...
International audienceNuclear Magnetic Resonance (NMR) is a powerful technique to probe the local en...
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...
Solid-state batteries potentially offer increased lithium-ion battery energy density and safety as r...
ConspectusDriven by the intrinsic safety and potential to achieve higher energy densities, solid-sta...
The influence of space-charge layers on the ionic charge transport over cathode-solid electrolyte in...
The development of commercial solid-state batteries has to date been hindered by the individual limi...
The influence of space-charge layers on the ionic charge transport over cathode-solid electrolyte in...
Interface engineering and the study of diffusion and transport processes through and along interfaci...
Interface engineering and the study of diffusion and transport processes through and along interfaci...
One of the main challenges of all-solid-state Li-ion batteries is the restricted power density due t...
The development of rechargeable batteries with higher energy densities and longer lifetimes represen...
The development of novel electrolyte materials for lithium ion batteries has been the focus of much ...
Lithium metal anodes offer a huge leap in the energy density of batteries, yet their implementation ...
International audienceNuclear Magnetic Resonance (NMR) is a powerful technique to probe the local en...
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...
Solid-state batteries potentially offer increased lithium-ion battery energy density and safety as r...
ConspectusDriven by the intrinsic safety and potential to achieve higher energy densities, solid-sta...
The influence of space-charge layers on the ionic charge transport over cathode-solid electrolyte in...
The development of commercial solid-state batteries has to date been hindered by the individual limi...
The influence of space-charge layers on the ionic charge transport over cathode-solid electrolyte in...
Interface engineering and the study of diffusion and transport processes through and along interfaci...
Interface engineering and the study of diffusion and transport processes through and along interfaci...
One of the main challenges of all-solid-state Li-ion batteries is the restricted power density due t...
The development of rechargeable batteries with higher energy densities and longer lifetimes represen...
The development of novel electrolyte materials for lithium ion batteries has been the focus of much ...
Lithium metal anodes offer a huge leap in the energy density of batteries, yet their implementation ...
International audienceNuclear Magnetic Resonance (NMR) is a powerful technique to probe the local en...