Halide-based solid electrolytes are currently growing in interest in solid-state batteries due to their high electrochemical stability window compared to sulfide electrolytes. However, often a bilayer separator of a sulfide and a halide is used and it is unclear why such setup is necessary, besides the instability of the halides against lithium metal. It is shown that an electrolyte bilayer improves the capacity retention as it suppresses interfacial resistance growth monitored by impedance spectroscopy. By using in-depth analytical characterization of buried interphases by time-of-flight secondary ion mass spectrometry and focused ion beam scanning electron microscopy analyses, an indium-sulfide rich region is detected at the halide and su...
Solid electrolytes are recognized as being pivotal to next-generation energy storage technologies. S...
Abstract Solid electrolytes (SEs) have gained increased attention for their promise t...
All-solid-state lithium batteries (ASSLBs) are considered as the next generation electrochemical ene...
Halide-based solid electrolytes are currently growing in interest in solid-state batteries due to th...
International audienceAll-solid-state batteries (ASSBs) that rely on the use of solid electrolytes (...
All-solid-state batteries have emerged as promising alternatives to conventional Li-ion batteries ow...
We have investigated the formation of the solid electrolyte interphase (SEI) on lithium electrodes i...
Current state of the art commercial lithium ion batteries (LIB) have been successful power sources f...
In this work, we investigated the interface between the sodium anode and the sulfide-based solid ele...
International audienceLithium-ion battery is the most effective electrochemical storage technology i...
This dissertation describes chemical compositions and fundamental mechanisms of formation of solid e...
International audienceConversion-type batteries with electrode materials partially dissolved in a li...
International audienceAll-solid-state-batteries studies have increased steadily over the past few ye...
Solid electrolytes are recognized as being pivotal to next-generation energy storage technologies. S...
Abstract Solid electrolytes (SEs) have gained increased attention for their promise t...
All-solid-state lithium batteries (ASSLBs) are considered as the next generation electrochemical ene...
Halide-based solid electrolytes are currently growing in interest in solid-state batteries due to th...
International audienceAll-solid-state batteries (ASSBs) that rely on the use of solid electrolytes (...
All-solid-state batteries have emerged as promising alternatives to conventional Li-ion batteries ow...
We have investigated the formation of the solid electrolyte interphase (SEI) on lithium electrodes i...
Current state of the art commercial lithium ion batteries (LIB) have been successful power sources f...
In this work, we investigated the interface between the sodium anode and the sulfide-based solid ele...
International audienceLithium-ion battery is the most effective electrochemical storage technology i...
This dissertation describes chemical compositions and fundamental mechanisms of formation of solid e...
International audienceConversion-type batteries with electrode materials partially dissolved in a li...
International audienceAll-solid-state-batteries studies have increased steadily over the past few ye...
Solid electrolytes are recognized as being pivotal to next-generation energy storage technologies. S...
Abstract Solid electrolytes (SEs) have gained increased attention for their promise t...
All-solid-state lithium batteries (ASSLBs) are considered as the next generation electrochemical ene...