Publication | Closed Access
Electron Microscopy Study of the LiFePO[sub 4] to FePO[sub 4] Phase Transition
567
Citations
14
References
2006
Year
Materials ScienceEngineeringElectron MicroscopyLithium-ion BatteryApplied PhysicsGrown CrystalsEnergy StorageElectron Microscopy StudyElectrochemical Energy StorageTransition ZoneChemistrySolid-state BatteryCrystal FormationCrystallographyElectrochemistry
The mechanism by which is transformed into isostructural has been elucidated using electron microscopy on large, hydrothermally grown crystals following chemical delithiation. Lithium is extracted at narrow, disordered transition zones on the crystal surface as the phase boundary progresses in the direction of the -axis. The substantial lattice mismatch along (ca. 5%) causes crack formation in the plane. Despite considerable disorder in the transition zone, the general structural arrangement is preserved, leading to good crystallinity in the newly created domains. Implications for improved electrode performance are discussed.
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