InfoMat · 2023 · 196 citations · 238 references
EngineeringSodium‐ion BatteriesChemistryChemical EngineeringInterface ChemistrySodium BatterySodium-ion BatteriesSuppress Phase TransitionAbstract Sodium‐ion BatteriesMaterials ScienceBattery Electrode MaterialsAdvanced Electrode MaterialLithium-ion BatteriesBattery AdditivesEnergy StorageFrom Air StabilitySurface ModificationSolid-state BatteryElectrochemistryLi-ion Battery MaterialsCathode MaterialsElectrochemical Energy StorageBatteries
Abstract Sodium‐ion batteries (SIBs) are considered as a low‐cost complementary or alternative system to prestigious lithium‐ion batteries (LIBs) because of their similar working principle to LIBs, cost‐effectiveness, and sustainable availability of sodium resources, especially in large‐scale energy storage systems (EESs). Among various cathode candidates for SIBs, Na‐based layered transition metal oxides have received extensive attention for their relatively large specific capacity, high operating potential, facile synthesis, and environmental benignity. However, there are a series of fatal issues in terms of poor air stability, unstable cathode/electrolyte interphase, and irreversible phase transition that lead to unsatisfactory battery performance from the perspective of preparation to application, outside to inside of layered oxide cathodes, which severely limit their practical application. This work is meant to review these critical problems associated with layered oxide cathodes to understand their fundamental roots and degradation mechanisms, and to provide a comprehensive summary of mainstream modification strategies including chemical substitution, surface modification, structure modulation, and so forth, concentrating on how to improve air stability, reduce interfacial side reaction, and suppress phase transition for realizing high structural reversibility, fast Na + kinetics, and superior comprehensive electrochemical performance. The advantages and disadvantages of different strategies are discussed, and insights into future challenges and opportunities for layered oxide cathodes are also presented. image
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Commercialization of Lithium Battery Technologies for Electric Vehicles
Xiaoqiao Zeng, Matthew Li, Deia Abd El‐Hady et al. · Advanced Energy Materials · 2019 · 1.4K citations · Full text
Rational design of layered oxide materials for sodium-ion batteries
Chenglong Zhao, Qidi Wang, Zhenpeng Yao et al. · Science · 2020 · 1.3K citations
Sodium and Sodium‐Ion Batteries: 50 Years of Research
Claude Delmas · Advanced Energy Materials · 2018 · 1.3K citations