The performance of battery electrode materials is strongly affected by inefficiencies in utilization kinetics and cycle life as well as size effects. Observations of phase transformations in these materials with high chemical and spatial resolution can elucidate the relationship between chemical processes and mechanical degradation. Soft X-ray ptychographic microscopy combined with X-ray absorption spectroscopy and electron microscopy creates a powerful suite of tools that we use to assess the chemical and morphological changes in lithium iron phosphate (LiFePO<sub>4</sub>) micro- and nanocrystals that occur upon delithiation. All sizes of partly delithiated crystals were found to contain two phases with a complex correlation between crysta...
Increasing the energy and power density simultaneously remains a major challenge for improving elect...
Nanostructured LiFePO<sub>4</sub> (LFP) electrodes have attracted great interest in the Li-ion batte...
Summary: The search for higher performance, improved safety, and lifetime of lithium-ion batteries r...
The performance of battery electrode materials is strongly affected by inefficiencies in utilization...
ABSTRACT: The performance of battery electrode materials is strongly affected by inefficiencies in u...
The chemical phase distribution in hydrothermally grown micrometric single crystals of LiFePO<sub>4<...
The chemical phase distribution in hydrothermally grown micrometric single crystals LiFePO4 followi...
The chemical phase distribution in hydrothermally grown micrometric single crystals of LiFePO4 follo...
Lithium iron phosphate (LixFePO4), a cathode material used in rechargeable Li-ion batteries, phase s...
The phase changes that occur during discharge of an electrode comprised of LiFePO<sub>4</sub>, carbo...
Through soft X-ray absorption spectroscopy, hard X-ray Raman scattering, and theoretical simulations...
The nanoscale interfacial inhomogeneity in a cycled large-format LiFePO<sub>4</sub> (LFP) composite ...
For the development of next-generation batteries it is important to understand the structural change...
For the development of next-generation batteries it is important to understand the structural change...
The energy density of current batteries is limited by the practical capacity of the positive electro...
Increasing the energy and power density simultaneously remains a major challenge for improving elect...
Nanostructured LiFePO<sub>4</sub> (LFP) electrodes have attracted great interest in the Li-ion batte...
Summary: The search for higher performance, improved safety, and lifetime of lithium-ion batteries r...
The performance of battery electrode materials is strongly affected by inefficiencies in utilization...
ABSTRACT: The performance of battery electrode materials is strongly affected by inefficiencies in u...
The chemical phase distribution in hydrothermally grown micrometric single crystals of LiFePO<sub>4<...
The chemical phase distribution in hydrothermally grown micrometric single crystals LiFePO4 followi...
The chemical phase distribution in hydrothermally grown micrometric single crystals of LiFePO4 follo...
Lithium iron phosphate (LixFePO4), a cathode material used in rechargeable Li-ion batteries, phase s...
The phase changes that occur during discharge of an electrode comprised of LiFePO<sub>4</sub>, carbo...
Through soft X-ray absorption spectroscopy, hard X-ray Raman scattering, and theoretical simulations...
The nanoscale interfacial inhomogeneity in a cycled large-format LiFePO<sub>4</sub> (LFP) composite ...
For the development of next-generation batteries it is important to understand the structural change...
For the development of next-generation batteries it is important to understand the structural change...
The energy density of current batteries is limited by the practical capacity of the positive electro...
Increasing the energy and power density simultaneously remains a major challenge for improving elect...
Nanostructured LiFePO<sub>4</sub> (LFP) electrodes have attracted great interest in the Li-ion batte...
Summary: The search for higher performance, improved safety, and lifetime of lithium-ion batteries r...