The chemical phase distribution in hydrothermally grown micrometric single crystals of LiFePO4 following partial chemical delithiation was investigated. Full field and scanning X-ray microscopy were combined with X-ray absorption spectroscopy at the Fe and O K-edges, respectively, to produce maps with high chemical and spatial resolution. The resulting information was compared to morphological insight into the mechanics of the transformation by scanning transmission electron microscopy. This study revealed the interplay at the mesocale between microstructure and phase distribution during the redox process, as morphological defects were found to kinetically determine the progress of the reaction. Lithium deintercalation was also found to ind...
International audienceLiFePO4 and FePO4 phase distributions of entire cross-sectioned electrodes wit...
LiFePO<sub>4</sub> and FePO<sub>4</sub> phase distributions of entire cross-sectioned electrodes wit...
Lithium iron phosphate (LiFePO4) is the prototypical two-phase battery material whose complex patter...
The chemical phase distribution in hydrothermally grown micrometric single crystals LiFePO4 followi...
The chemical phase distribution in hydrothermally grown micrometric single crystals of LiFePO<sub>4<...
ABSTRACT: The performance of battery electrode materials is strongly affected by inefficiencies in u...
The performance of battery electrode materials is strongly affected by inefficiencies in utilization...
The performance of battery electrode materials is strongly affected by inefficiencies in utilization...
International audienceThe kinetic of LiFePO4 chemical delithiation was studied on sintered powders s...
International audienceLithium iron phosphate is one of the most promising positive-electrode materia...
LiFePO4 and FePO4 phase distributions of entire cross-sectioned electrodes with various Li content a...
International audienceLiFePO4 and FePO4 phase distributions of entire cross-sectioned electrodes wit...
LiFePO<sub>4</sub> and FePO<sub>4</sub> phase distributions of entire cross-sectioned electrodes wit...
Lithium iron phosphate (LiFePO4) is the prototypical two-phase battery material whose complex patter...
The chemical phase distribution in hydrothermally grown micrometric single crystals LiFePO4 followi...
The chemical phase distribution in hydrothermally grown micrometric single crystals of LiFePO<sub>4<...
ABSTRACT: The performance of battery electrode materials is strongly affected by inefficiencies in u...
The performance of battery electrode materials is strongly affected by inefficiencies in utilization...
The performance of battery electrode materials is strongly affected by inefficiencies in utilization...
International audienceThe kinetic of LiFePO4 chemical delithiation was studied on sintered powders s...
International audienceLithium iron phosphate is one of the most promising positive-electrode materia...
LiFePO4 and FePO4 phase distributions of entire cross-sectioned electrodes with various Li content a...
International audienceLiFePO4 and FePO4 phase distributions of entire cross-sectioned electrodes wit...
LiFePO<sub>4</sub> and FePO<sub>4</sub> phase distributions of entire cross-sectioned electrodes wit...
Lithium iron phosphate (LiFePO4) is the prototypical two-phase battery material whose complex patter...