• DocumentCode
    3016782
  • Title

    Controllable nanodomain defects in ferroelectric/ferroelastic biferroic thin films

  • Author

    Long Ding ; Durkan, Colm

  • Author_Institution
    Nanosci. Centre, Univ. of Cambridge, Cambridge, UK
  • fYear
    2013
  • fDate
    5-8 Aug. 2013
  • Firstpage
    110
  • Lastpage
    113
  • Abstract
    Ferroelectric thin films have been intensively studied at the nanometre scale due to the application in many fields, such as non-volatile memories. Enhanced piezo-response force microscopy (E-PFM) was used to investigate the evolution of ferroelectric and ferroelastic nanodomains in a polycrystalline thin film of the simple multi-ferroic PbZr0.3Ti0.7O3 (PZT). By applying a d.c. voltage between the atomic force microscopy (AFM) tip and the bottom substrate of the sample, we created an electric field to switch the domain orientation. Reversible switching of both ferroelectric and ferroelastic domains towards particular directions with predominantly (111) domain orientations are observed. We also showed that along with the ferroelectric/ferroelastic domain switch, there are defects that also switch. Finally, we proposed the possible explanation of this controllable defect in terms of flexoelectricity and defect pinning.
  • Keywords
    atomic force microscopy; crystal defects; electric domains; ferroelasticity; ferroelectric thin films; flexoelectricity; lead compounds; zirconium compounds; AFT; PZT; atomic force microscopy; defect pinning; electric field; enhanced piezo-response force microscopy; ferroelastic nanodomains; ferroelectric nanodomains; ferroelectric-ferroelastic biferroic thin films; flexoelectricity; nanodomain defects; polycrystalline thin film; Films; Force; Microscopy; Stress; Surface topography; Switches;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Nanotechnology (IEEE-NANO), 2013 13th IEEE Conference on
  • Conference_Location
    Beijing
  • ISSN
    1944-9399
  • Print_ISBN
    978-1-4799-0675-8
  • Type

    conf

  • DOI
    10.1109/NANO.2013.6720917
  • Filename
    6720917