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AbstractCurrently, it is a significant challenge to achieve long-term cyclability and fast chargeability in lithium-ion batteries,
AbstractDespite the high-capacity nature of high-nickel cathode materials, achieving their practical implementation is challenging
AbstractTo extend the lifespan of Ni-rich layered oxide cathodes, doping, coating, and particle-morphology optimization strategies
AbstractIonogels, electrolytes containing an ionic liquid and a solid matrix, show potential for enhancing Li-ion battery performa
AbstractThe utilization of high-voltage intercalation cathodes in calcium-ion batteries (CIBs) is impeded by the substantial size
AbstractCo-intercalation reactions make graphite a feasible anode in Ca ion batteries, yet the correlation between Ca ion intercal
AbstractNi-rich layered oxides are envisioned as the most promising cathode materials for next-generation lithium-ion batteries; h
AbstractHigh-Ni layered oxide cathodes are promising candidates for lithium-ion batteries due to their high energy density. Howeve
AbstractRecently, the cost of lithium-ion batteries has risen as the price of lithium raw materials has soared and fluctuated. Not
AbstractNi-rich layered oxide has become an indispensable cathode for incumbent lithium-ion batteries due to their high energy den
AbstractClick to copy section linkSpinel-type lithium manganese oxide (LiMn2O4) cathodes suffer from severe manganese dissolution
AbstractCarbon-supported Pt nanoparticles are the leading catalysts for the cathode oxygen reduction reaction (ORR) in polymer ele
AbstractClick to copy section linkConspectusLithium-ion batteries (LIBs) are nearly ubiquitous energy storage solutions, powering
AbstractAchieving chemical and electrochemical stability of sulfide-based solid electrolytes is crucial for enabling practical slu