4.6 Article

Extensive domain wall motion and deaging resistance in morphotropic 0.55Bi(Ni1/2Ti1/2)O3-0.45PbTiO3 polycrystalline ferroelectrics

Journal

APPLIED PHYSICS LETTERS
Volume 104, Issue 13, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.4870506

Keywords

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Funding

  1. U.S. Department of the Army [W911NF-09-1-0435]
  2. National Natural Science Foundation of China [21231001, 21322102, 21031005]
  3. U.S. Department of Energy, Office of Science, Office of Basic Energy Sciences [DE-AC02-06CH11357]

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Domain wall motion is known as a major source of extrinsic contributions to the dielectric and piezoelectric properties of ferroelectric materials. In the present work, we report the extent of non-180 degrees domain wall motion during strong and weak electric field amplitudes in situ using time-resolved, high-energy X-ray diffraction in the ferroelectric morphotropic phase boundary composition 0.55Bi(Ni1/2Ti1/2)O-3-0.45PbTiO(3) (BNT-45PT). After application of strong electric fields, two phases are shown to coexist. In the tetragonal phase of this material, the extent of 90 degrees domain wall motion is significant and the domain alignment is nearly saturated. Weak (subswitching) cyclic electric fields are then also shown to induce domain wall motion. Deaging, or the progressive loss of preferred domain orientation during sequentially increasing field amplitudes, is notably low in these materials, showing that the initial domain alignment is strongly stabilized. Overall, the in situ measurements reveal that domain wall motion significantly impacts the structure and properties of BNT-45PT and reinforces the importance of understanding domain wall motion contributions to the physical properties of ferroelectrics. (C) 2014 AIP Publishing LLC.

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