Header menu link for other important links
X
Pulsed laser deposition of Sr2FeMoO6 thin films grown on spark plasma sintered Sr2MgWO6 substrates
Published in Institute of Physics Publishing
2017
Volume: 50
   
Issue: 23
Abstract
Sr2FeMoO6 (SFMO) films were deposited on polycrystalline spark plasma synthesized Sr2MgWO6 (SMWO) substrates. Films were grown using pulsed laser deposition at temperatures (Tdep) between 720 °C and 820 °C in a vacuum environment of pressure Pdep = 10-6 mbar (0.1 mPa); after deposition they were cooled either in a pressure Pcool = Pdep or Pcool = 10-4 mbar (10 mPa) O2. Despite the use of an isostructural substrate, the growth and cooling conditions play the primary role in determining details of the films' structures and properties, similarly to single-crystals. Grazing x-ray and electron back-scatter diffraction indicate that vacuum-cooled films were pure perovskite-structured SFMO exhibiting grain-over-grain growth that aligned the perovskite sub-cells. SrMoO4 impurities were observed in the x-ray patterns for the oxygen-cooled films similarly to single-crystal substrates. Magnetic, electronic and magnetoresistive properties were all a function of growth and cooling environments. The Curie temperature and magnetization of the films increased with T dep up to 800 °C. The vacuum-cooled films had low-resistivities with essentially metallic conductivity (small resistivity increases occurred at low-T), while the conductivity of oxygen-cooled films were consistent with variable range hopping. The oxygen-cooled films had higher low-field magnetoresistance effects at 5 K than the vacuum-cooled films, which seems consistent with SrMoO4 forming at grain boundaries. This work opens the route to tailor the electronic properties by engineering the grain boundaries in thin films. © 2017 IOP Publishing Ltd.
About the journal
JournalJournal of Physics D: Applied Physics
PublisherInstitute of Physics Publishing
ISSN00223727
Open AccessNo
Concepts (25)
  •  related image
    Crystal impurities
  •  related image
    Electronic cooling
  •  related image
    Electronic properties
  •  related image
    Grain boundaries
  •  related image
    Grain growth
  •  related image
    Iron compounds
  •  related image
    MAGNESIUM COMPOUNDS
  •  related image
    Oxides
  •  related image
    Oxygen
  •  related image
    Perovskite
  •  related image
    Pulsed laser deposition
  •  related image
    Pulsed lasers
  •  related image
    Single crystals
  •  related image
    Strontium compounds
  •  related image
    Substrates
  •  related image
    X rays
  •  related image
    Electron back scatter diffraction
  •  related image
    LOW FIELD MAGNETO-RESISTANCE
  •  related image
    MAGNETORESISTIVE PROPERTY
  •  related image
    Metallic conductivity
  •  related image
    SINGLE CRYSTAL SUBSTRATES
  •  related image
    STRUCTURES AND PROPERTIES
  •  related image
    VACUUM ENVIRONMENT
  •  related image
    Variable range hopping
  •  related image
    Thin films