The Structure and Ferroelectric Properties of Iron-Doped Lead Titanate

dc.contributor.advisorPrasenjit Guptasarma
dc.contributor.advisorMarija Gajdardziska
dc.contributor.committeememberPrasenjit Guptasarma
dc.contributor.committeememberMarija Gajdardziska
dc.contributor.committeememberMarvin A. Schofield
dc.creatorBartlein, Michael
dc.date.accessioned2025-01-16T20:03:36Z
dc.date.issued2014-12-01
dc.description.abstractMultiferroics are a class of poorly understood, but technologically important materials. Lead(II) titanate (PbTiO$_3$) is a known perovskite ferroelectric. By doping PbTiO$_3$ with Fe$^{3+}$ at the Ti site, we produce the multiferroic PbTi$_{1-x}$Fe$_x$O$_3$ (PTFO). Using selected area electron diffraction on a transmission electron microscope, the structure of PTFO is investigated. Of particular interest is identifying the cubic-to-tetragonal transition at the Curie temperature. As the concentration of Fe increases, the crystal becomes more cubic and experiences a lower transition temperature. I also establish a procedure for preparing bulk PTFO samples for ferroelectric testing and present preliminary results establishing ferroelectricity in these PTFO samples. Ferroelectricity is determined by detecting the remanent polarization and switching voltage from ferroelectric hysteresis. A Radiant Technologies Precision LC loop-tracing assembly is used to test the samples for ferroelectric hysteresis.
dc.description.embargo2017-06-29
dc.embargo.liftdate2017-06-29
dc.identifier.urihttp://digital.library.wisc.edu/1793/88752
dc.relation.replaceshttps://dc.uwm.edu/etd/857
dc.subjectFerroelectrics
dc.subjectLead Titanate
dc.subjectMultiferroics
dc.titleThe Structure and Ferroelectric Properties of Iron-Doped Lead Titanate
dc.typethesis
thesis.degree.disciplinePhysics
thesis.degree.grantorUniversity of Wisconsin-Milwaukee
thesis.degree.nameMaster of Science

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