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dc.contributor.authorNguyen, Van Sonen
dc.contributor.authorMai, Van Huyen
dc.contributor.authorSenzier, Pascale Aubanen
dc.contributor.authorPasquier, Claudeen
dc.contributor.authorWang, Kangen
dc.contributor.authorRozenberg, Marcelo J.en
dc.contributor.authorBrun, Nathalieen
dc.contributor.authorMarch, Katiaen
dc.contributor.authorJomard, Françoisen
dc.contributor.authorGiapintzakis, Johnen
dc.contributor.authorMihailescu, Cristian N.en
dc.contributor.authorKyriakides, Evripidesen
dc.contributor.authorNukala, Pavanen
dc.contributor.authorMaroutian, Thomasen
dc.contributor.authorAgnus, Guillaumeen
dc.contributor.authorLecoeur, Philippeen
dc.contributor.authorMatzen, Silviaen
dc.contributor.authorAubert, Pascalen
dc.contributor.authorFranger, Sylvainen
dc.contributor.authorSalot, Raphaëlen
dc.contributor.authorAlbouy, Pierre-Antoineen
dc.contributor.authorAlamarguy, Daviden
dc.contributor.authorDkhil, Brahimen
dc.contributor.authorChrétien, Pascalen
dc.contributor.authorSchneegans, Olivieren
dc.creatorNguyen, Van Sonen
dc.creatorMai, Van Huyen
dc.creatorSenzier, Pascale Aubanen
dc.creatorPasquier, Claudeen
dc.creatorWang, Kangen
dc.creatorRozenberg, Marcelo J.en
dc.creatorBrun, Nathalieen
dc.creatorMarch, Katiaen
dc.creatorJomard, Françoisen
dc.creatorGiapintzakis, Johnen
dc.creatorMihailescu, Cristian N.en
dc.creatorKyriakides, Evripidesen
dc.creatorNukala, Pavanen
dc.creatorMaroutian, Thomasen
dc.creatorAgnus, Guillaumeen
dc.creatorLecoeur, Philippeen
dc.creatorMatzen, Silviaen
dc.creatorAubert, Pascalen
dc.creatorFranger, Sylvainen
dc.creatorSalot, Raphaëlen
dc.creatorAlbouy, Pierre-Antoineen
dc.creatorAlamarguy, Daviden
dc.creatorDkhil, Brahimen
dc.creatorChrétien, Pascalen
dc.creatorSchneegans, Olivieren
dc.date.accessioned2021-01-27T10:17:39Z
dc.date.available2021-01-27T10:17:39Z
dc.date.issued2018
dc.identifier.issn1613-6829
dc.identifier.urihttp://gnosis.library.ucy.ac.cy/handle/7/63750
dc.description.abstractLithium cobalt oxide nanobatteries offer exciting prospects in the field of nonvolatile memories and neuromorphic circuits. However, the precise underlying resistive switching (RS) mechanism remains a matter of debate in two-terminal cells. Herein, intriguing results, obtained by secondary ion mass spectroscopy (SIMS) 3D imaging, clearly demonstrate that the RS mechanism corresponds to lithium migration toward the outside of the LixCoO2 layer. These observations are very well correlated with the observed insulator-to-metal transition of the oxide. Besides, smaller device area experimentally yields much faster switching kinetics, which is qualitatively well accounted for by a simple numerical simulation. Write/erase endurance is also highly improved with downscaling – much further than the present cycling life of usual lithium-ion batteries. Hence very attractive possibilities can be envisaged for this class of materials in nanoelectronics.en
dc.language.isoenen
dc.sourceSmallen
dc.source.urihttps://www.onlinelibrary.wiley.com/doi/abs/10.1002/smll.201801038
dc.titleDirect Evidence of Lithium Ion Migration in Resistive Switching of Lithium Cobalt Oxide Nanobatteriesen
dc.typeinfo:eu-repo/semantics/article
dc.identifier.doi10.1002/smll.201801038
dc.description.volume14
dc.description.issue24
dc.author.facultyΠολυτεχνική Σχολή / Faculty of Engineering
dc.author.departmentΤμήμα Μηχανικών Μηχανολογίας και Κατασκευαστικής / Department of Mechanical and Manufacturing Engineering
dc.type.uhtypeArticleen
dc.contributor.orcidGiapintzakis, John [0000-0002-7277-2662]
dc.contributor.orcidKyriakides, Evripides [0000-0002-5483-7119]
dc.gnosis.orcid0000-0002-7277-2662
dc.gnosis.orcid0000-0002-5483-7119


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