Publication | Open Access
Narrowing the Gap between Theoretical and Practical Capacities in Li‐Ion Layered Oxide Cathode Materials
630
Citations
254
References
2017
Year
EngineeringLayered Lithium OxidesChemistryChemical EngineeringSodium BatteryPractical CapacitiesMaterials ScienceBattery Electrode MaterialsAdvanced Electrode MaterialLithium-ion BatteryBattery AdditivesLithium-ion BatteriesEnergy StorageSolid-state BatteryElectrochemistryLi-ion Battery MaterialsLi IntercalationCathode MaterialsLayered OxidesElectrochemical Energy StorageBatteries
Abstract Although layered lithium oxides have become the cathode of choice for state‐of‐the‐art Li‐ion batteries, substantial gaps remain between the practical and theoretical energy densities. With the aim of supporting efforts to close this gap, this work reviews the fundamental operating mechanisms and challenges of Li intercalation in layered oxides, contrasts how these challenges play out differently for different materials (with emphasis on Ni–Co–Al (NCA) and Ni–Mn–Co (NMC) alloys), and summarizes the extensive corpus of modifications and extensions to the layered lithium oxides. Particular emphasis is given to the fundamental mechanisms behind the operation and degradation of layered intercalation electrode materials as well as novel modifications and extensions, including Na‐ion and cation‐disordered materials.
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