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Revealing the structural degradation mechanism of the Ni-rich cathode surface: How thick is the surface?

Yoon‐Sok Kang, Sung Yong Park, Kimihiko Ito, Yoshimi Kubo, Yongwoo Shin, Dong Young Kim, Dong‐Hwa Seo, Soo‐Jin Kim, Jin-Hwan Park, Seok‐Gwang Doo, Meiten Koh, Jin Ah Seo, Kwangjin Park

2021Journal of Power Sources48 citationsDOIOpen Access PDF

Topics & Concepts

CathodeDielectric spectroscopyMaterials scienceElectron energy loss spectroscopyScanning transmission electron microscopyBattery (electricity)ElectrochemistryAnalytical Chemistry (journal)Transmission electron microscopyElectrodePhase (matter)Scanning electron microscopeDegradation (telecommunications)Chemical engineeringComposite materialChemistryNanotechnologyThermodynamicsElectronic engineeringOrganic chemistryPhysical chemistryPower (physics)PhysicsChromatographyEngineeringAdvancements in Battery MaterialsAdvanced Battery Materials and TechnologiesAdvanced Battery Technologies Research
Revealing the structural degradation mechanism of the Ni-rich cathode surface: How thick is the surface? | Litcius