Cyclic-induced deformation and the degradation of Al-doped LLZO electrolytes in all-solid-state Li-metal batteries

dc.contributor.authorAdjah, J.
dc.contributor.authorOrisekeh, K.I.
dc.contributor.authorAgyei-Tuffour, B.
dc.contributor.authoret al.
dc.date.accessioned2024-12-05T17:06:33Z
dc.date.issued2023
dc.descriptionResearch Article
dc.description.abstractThis paper presents the results of a study of the mechanical degradation of Li-oxide garnet solid electrolyte, Li7La3Zr2O12 (LLZO) in all-solid-state lithium metal batteries. A coupled thermo-electro-chemo-mechanical the model was used to analyze the stress-strain distribution and cracking phenomena within the electrolyte. A combination of in-situ/ex-situ microscopic observations, strain mapping, and finite element modeling was deployed to study the progressive deformation and cracking phenomena that occur as a result of electrochemical charging and discharging, thermal runaway, and joule heating phenomena. The results show that strains induced during discharge cycles are more significant than those induced during the charging phase. The accumulation of strains during charging and discharging is also shown to result ultimately in cracking that impedes Li-ion transport, while accelerating electrochemical degradation. The implications of these processes are discussed for the development of robust and durable all-solid-state batteries.
dc.identifier.otherhttps://doi.org/10.1016/j.jpowsour.2023.234022
dc.identifier.urihttps://ugspace.ug.edu.gh/handle/123456789/42711
dc.language.isoen
dc.publisherJournal of Power Sources
dc.subjectAll-solid-state Li-Ion batteries
dc.subjectAl-doped LLZO
dc.subjectStress/strain state
dc.subjectImpedance
dc.subjectElectrochemical degradation
dc.subjectCharge-discharge cycles
dc.subjectIonic conductivity
dc.titleCyclic-induced deformation and the degradation of Al-doped LLZO electrolytes in all-solid-state Li-metal batteries
dc.typeArticle

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