Electronic structure of CuCrO2 thin films grown on Al2O3(001) by oxygen plasma assisted molecular beam epitaxy

Thin films of CuCrO2 have been grown on Al2O 3(001) substrates by oxygen plasma assisted molecular beam epitaxy. With a substrate temperature of 700°C or 750°C, the films showed an unanticipated (015) orientation but at a higher substrate temperature of 800°C the expected basal (001) orientation pre...

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Main Authors: Shin, D, Foord, J, Egdell, R, Walsh, A
Format: Journal article
Language:English
Published: 2012
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author Shin, D
Foord, J
Egdell, R
Walsh, A
author_facet Shin, D
Foord, J
Egdell, R
Walsh, A
author_sort Shin, D
collection OXFORD
description Thin films of CuCrO2 have been grown on Al2O 3(001) substrates by oxygen plasma assisted molecular beam epitaxy. With a substrate temperature of 700°C or 750°C, the films showed an unanticipated (015) orientation but at a higher substrate temperature of 800°C the expected basal (001) orientation predominates. The optical absorption spectrum of CuCrO2 shows a direct allowed absorption onset at 3.18eV together with a weak peak at 2.0eV which is suppressed by Sn doping. This suggests that the low energy peak should be attributed to 3d→3d excitations associated with Cu2+ defect states rather than excitations localised on Cr3+. Valence band X-ray photoemission spectra of (001) and (015) oriented CuCrO2 are compared with those obtained from polycrystalline samples. © 2012 American Institute of Physics.
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spelling oxford-uuid:084185d7-5670-4407-a160-d859018decb52022-03-26T09:11:56ZElectronic structure of CuCrO2 thin films grown on Al2O3(001) by oxygen plasma assisted molecular beam epitaxyJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:084185d7-5670-4407-a160-d859018decb5EnglishSymplectic Elements at Oxford2012Shin, DFoord, JEgdell, RWalsh, AThin films of CuCrO2 have been grown on Al2O 3(001) substrates by oxygen plasma assisted molecular beam epitaxy. With a substrate temperature of 700°C or 750°C, the films showed an unanticipated (015) orientation but at a higher substrate temperature of 800°C the expected basal (001) orientation predominates. The optical absorption spectrum of CuCrO2 shows a direct allowed absorption onset at 3.18eV together with a weak peak at 2.0eV which is suppressed by Sn doping. This suggests that the low energy peak should be attributed to 3d→3d excitations associated with Cu2+ defect states rather than excitations localised on Cr3+. Valence band X-ray photoemission spectra of (001) and (015) oriented CuCrO2 are compared with those obtained from polycrystalline samples. © 2012 American Institute of Physics.
spellingShingle Shin, D
Foord, J
Egdell, R
Walsh, A
Electronic structure of CuCrO2 thin films grown on Al2O3(001) by oxygen plasma assisted molecular beam epitaxy
title Electronic structure of CuCrO2 thin films grown on Al2O3(001) by oxygen plasma assisted molecular beam epitaxy
title_full Electronic structure of CuCrO2 thin films grown on Al2O3(001) by oxygen plasma assisted molecular beam epitaxy
title_fullStr Electronic structure of CuCrO2 thin films grown on Al2O3(001) by oxygen plasma assisted molecular beam epitaxy
title_full_unstemmed Electronic structure of CuCrO2 thin films grown on Al2O3(001) by oxygen plasma assisted molecular beam epitaxy
title_short Electronic structure of CuCrO2 thin films grown on Al2O3(001) by oxygen plasma assisted molecular beam epitaxy
title_sort electronic structure of cucro2 thin films grown on al2o3 001 by oxygen plasma assisted molecular beam epitaxy
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AT egdellr electronicstructureofcucro2thinfilmsgrownonal2o3001byoxygenplasmaassistedmolecularbeamepitaxy
AT walsha electronicstructureofcucro2thinfilmsgrownonal2o3001byoxygenplasmaassistedmolecularbeamepitaxy