International audienceWe report a computational study on 3d transition‐metal (Cr, Mn, Fe, and Co) carbodiimides in Li‐ and Na‐ion batteries. The obtained cell voltages semi‐quantitatively fit the experiments, highlighting the practicality of PBE+U as an approach for modeling the conversion‐reaction mechanism of the FeNCN archetype with lithium and sodium. Also, the calculated voltage profiles agree satisfactorily with experiment both for full (Li‐ion battery) and partial (Na‐ion battery) discharge, even though experimental atomistic knowledge is missing up to now. Moreover, we rationalize the structural preference of intermediate ternaries and their characteristic lowering in the voltage profile using chemical‐bonding and Mulliken‐charge an...
Solid-state batteries have the potential to revolutionise energy storage. Their rapid development re...
International audienceCobalt carbodiimide, CoNCN, shows outstanding performance as negative electrod...
In the domain of energy storing and more specifically in the field of lithium batteries, the underst...
International audienceWe report a computational study on 3d transition‐metal (Cr, Mn, Fe, and Co) ca...
International audienceWe report evidence for the electrochemical activity of transition‐metal carbod...
We report evidence for the electrochemical activity of transition-metal carbodiimides versus lithium...
International audienceA detailed study of the electrochemical reaction mechanism between lithium and...
An initial search with density functional theory to sort through potential cathode materials based o...
Rechargeable batteries have already conquered the market of portable electronics (i.e., mobile phone...
In this work, we have employed the first-principles quantum physics method to investigate the light-...
Rechargeable lithium-ion batteries (LIBs) afford a profound impact on our modern daily life. However...
Among the existing energy storage technologies, lithium‐ion batteries (LIBs) have unmatched energy d...
Lithium-ion batteries (LIBs) represent the state of the art in high-density energy storage. To furth...
Solid-state batteries have the potential to revolutionise energy storage. Their rapid development re...
International audienceCobalt carbodiimide, CoNCN, shows outstanding performance as negative electrod...
In the domain of energy storing and more specifically in the field of lithium batteries, the underst...
International audienceWe report a computational study on 3d transition‐metal (Cr, Mn, Fe, and Co) ca...
International audienceWe report evidence for the electrochemical activity of transition‐metal carbod...
We report evidence for the electrochemical activity of transition-metal carbodiimides versus lithium...
International audienceA detailed study of the electrochemical reaction mechanism between lithium and...
An initial search with density functional theory to sort through potential cathode materials based o...
Rechargeable batteries have already conquered the market of portable electronics (i.e., mobile phone...
In this work, we have employed the first-principles quantum physics method to investigate the light-...
Rechargeable lithium-ion batteries (LIBs) afford a profound impact on our modern daily life. However...
Among the existing energy storage technologies, lithium‐ion batteries (LIBs) have unmatched energy d...
Lithium-ion batteries (LIBs) represent the state of the art in high-density energy storage. To furth...
Solid-state batteries have the potential to revolutionise energy storage. Their rapid development re...
International audienceCobalt carbodiimide, CoNCN, shows outstanding performance as negative electrod...
In the domain of energy storing and more specifically in the field of lithium batteries, the underst...