Li states on a C–H vacancy in graphane : a first-principles study

dc.contributor.authorMapasha, Refilwe Edwin
dc.contributor.authorMolepo, M.P.
dc.contributor.authorChetty, Nithaya
dc.contributor.emailedwin.mapasha@up.ac.zaen_ZA
dc.date.accessioned2017-09-14T06:14:10Z
dc.date.available2017-09-14T06:14:10Z
dc.date.issued2017
dc.description.abstractUsing a hybrid density functional theory approach, we have studied the effect of the interaction of a Li atom with a C–H pair vacancy defect (VCH) in a graphane monolayer on the thermodynamic stability, structural, magnetic and electronic properties, taking into account the effect of charge doping. We found that a Li atom and charge doping enhanced the thermodynamic stability of a VCH defective graphane monolayer. The Li–VCH system may likely act as a single deep donor, and can readily compensate the acceptor. The effects of Li introduce more occupied states in the band gap, and there exists strong hybridization between the C 2p states and Li 2s states at the vicinity of the Fermi level (EF) responsible for the large magnetic moment noted. The 1 charge doping (Li1 –VCH) further populates the occupied states in the band gap, shifting the EF towards the conduction band minimum. Consequently, the Li1 –VCH system possesses spintronic effects such as half-metallic ferromagnetic character and pronounced magnetism. The +1 charge doping (Li1+–VCH) removes some of the Li induced occupied states, slightly shifting the EF towards the valence band maximum leading to a reduction in the magnetic moment. Our findings give an explanation of the origin of magnetism in a VCH defective graphane system and suggest a possible practical way of controlling it.en_ZA
dc.description.departmentPhysicsen_ZA
dc.description.librarianam2017en_ZA
dc.description.sponsorshipThe University of Pretoria, University of South Africa and the National Research Foundation (NRF). NC thanks the National Institute for Theoretical Physics (NIThep) for financial support. Remove selecteden_ZA
dc.description.urihttp://www.rsc.org/advancesen_ZA
dc.identifier.citationMapasha, R.E., Molepo, M.P. & Chetty, N. Li states on a C–H vacancy in graphane : a first-principles study. RSC Advances, 2017, 7, 39748-39757.en_ZA
dc.identifier.issn2046-2069 (online)
dc.identifier.other10.1039/c7ra06431d
dc.identifier.urihttp://hdl.handle.net/2263/62261
dc.language.isoenen_ZA
dc.publisherRoyal Society of Chemistryen_ZA
dc.rights© The Royal Society of Chemistry 2017en_ZA
dc.subjectAtomsen_ZA
dc.subjectLithiumen_ZA
dc.subjectValence-band maximumsen_ZA
dc.subjectVacancy defectsen_ZA
dc.subjectMagnetic and electronic propertiesen_ZA
dc.subjectHybrid density functional theoryen_ZA
dc.subjectHalf-metallicen_ZA
dc.subjectFirst-principles studyen_ZA
dc.subjectFerromagnetic characteren_ZA
dc.subjectConduction-band minimumen_ZA
dc.subjectVacanciesen_ZA
dc.subjectThermodynamic stabilityen_ZA
dc.subjectMonolayersen_ZA
dc.subjectMagnetismen_ZA
dc.subjectMagnetic momentsen_ZA
dc.subjectEnergy gapen_ZA
dc.subjectElectronic propertiesen_ZA
dc.subjectDensity functional theory (DFT)en_ZA
dc.subjectDefect densityen_ZA
dc.titleLi states on a C–H vacancy in graphane : a first-principles studyen_ZA
dc.typeArticleen_ZA

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