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dc.contributor.authorTangarife, E. [Univ Mayor, Fac Ciencias, Ctr Nanotecnol Aplicada]es_CL
dc.contributor.authorMejia-López, J.es_CL
dc.contributor.authorMazo-Zuluaga, J.es_CL
dc.date.accessioned2020-04-12T14:11:55Z
dc.date.accessioned2020-04-14T15:46:16Z
dc.date.available2020-04-12T14:11:55Z
dc.date.available2020-04-14T15:46:16Z
dc.date.issued2019es_CL
dc.identifier.citationMejía-López, J., Tangarife, E., & Mazo-Zuluaga, J. (2019). Physical–chemical properties of M@ Fe 3 O 4 core@ shell nanowires (M= Cu, Co, CoO). Physical Chemistry Chemical Physics, 21(8), 4584-4593.es_CL
dc.identifier.issn1463-9076es_CL
dc.identifier.issn1463-9084es_CL
dc.identifier.urihttps://doi.org/10.1039/c8cp07193des_CL
dc.identifier.urihttp://repositorio.umayor.cl/xmlui/handle/sibum/6694
dc.description.abstractInterest in low dimensional magnetic systems has been growing due to the novel and dramatically differentiated effects of their physical properties, which give them special behaviors and uses in biomedical, environmental and technological fields. In this study we report extensive first-principles calculations on the geometric optimization as well as electronic, magnetic, mechanical and thermal properties of several quasi one-dimensional core/shell nanowires: Cu/Fe3O4, Co/Fe3O4, and CoO/Fe3O4. The main focus lies on the quantum confinement effects as well as on the effect of the interaction between the ferrimagnetic semiconductor shell material (magnetite nanotube) and core compounds with differentiated magnetic behavior such as (i) a ferromagnetic material (Co), (ii) an antiferromagnetic transition metal oxide (CoO) and (iii) a non-magnetic simple metal (Cu). The mechanical properties of the related nanosystems are studied through the effects of axial deformations, and their thermal behavior is evaluated by considering the electronic contribution of each sample to the heat capacity, and some potential technological applications are suggested.es_CL
dc.description.sponsorshipFinanciamiento basal para centros cientificos y tecnologicos de excelencia (Chile)Comision Nacional de Investigacion Cientifica y Tecnologica (CONICYT)CONICYT PIA/BASAL [FB 0807]; Dedicacion Exclusiva 2019 at the Universidad de Antioquia (Colombia); Universidad de Antioquia (Colombia) [CODI-SUI 2018-22410];"Estrategia de Sostenibilidad GES 2018-2019"at the Universidad de Antioquia (Colombia)es_CL
dc.description.sponsorshipWe gratefully acknowledge support from: Financiamiento basal para centros cientificos y tecnologicos de excelencia FB 0807 (Chile); the"Dedicacion Exclusiva 2019", the CODI-SUI 2018-22410 project and the"Estrategia de Sostenibilidad GES 2018-2019"at the Universidad de Antioquia (Colombia).es_CL
dc.language.isoenes_CL
dc.publisherROYAL SOC CHEMISTRYes_CL
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 Chile
dc.sourcePhys. Chem. Chem. Phys., FEB, 2019. 21(8): p. 4584-4593
dc.subjectChemistry, Physical; Physics, Atomic, Molecular & Chemicales_CL
dc.titlePhysical-chemical properties of M@Fe3O4 core@shell nanowires (M = Cu, Co, CoO)es_CL
dc.typeArtículoes_CL
umayor.facultadCIENCIAS
umayor.politicas.sherpa/romeoRoMEO yellow journal (Puede archivar el pre-print (ie la versión previa a la revisión por pares). Disponible en: http://sherpa.ac.uk/romeo/index.phpes_CL
umayor.indexadoWOS:000461722500044es_CL
umayor.indexadoPMID: 30742146es_CL
dc.identifier.doiDOI: 10.1039/c8cp07193des_CL]
umayor.indicadores.wos-(cuartil)Q2es_CL
umayor.indicadores.scopus-(scimago-sjr)SCIMAGO/ INDICE H: 199 Hes_CL


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