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Background oxygen effects on pulsed laser deposited Na0.5K0.5NbO3 films : From superparaelectric state to ferroelectricity

Cho, C. R. (author)
Grishin, Alexander M. (author)
KTH,Fysik
 (creator_code:org_t)
AIP Publishing, 2000
2000
English.
In: Journal of Applied Physics. - : AIP Publishing. - 0021-8979 .- 1089-7550. ; 87:9, s. 4439-4448
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Ambient oxygen pressure in a pulsed laser deposition process has been observed to have a critical influence on the compositional, crystalline, and electrical properties of Na0.5K0.5NbO3 (NKN) thin films grown onto polycrystalline Pt80Ir20 and SiO2 (native oxide)/Si(111) substrates. Films prepared at high oxygen pressure (similar to 400 mTorr) were found to be single phase and highly c-axis oriented. X-ray diffraction theta-2 theta scans and rocking curve data show a strong effect of NKN film self-assembling along the [001] direction regardless of the substrate texture. The high dielectric permittivity of 550, low dissipation factor of less than 3%, and high remanent polarization of 12 mu C/cm(2) indicate the high ferroelectric quality of the fabricated film. The role of the high-energy component of the erosion products has been proven to be crucial to film performance. On the other hand, films grown at low oxygen pressure (similar to 10 mTorr) have been found to be mixed phases of ferroelectric NKN and paraelectric potassium niobates. These films have shown superparaelectric behavior: 5% tunability at an electric field of 100 kV/cm, losses as low as 0.3%, and excellent stability to temperature and frequency changes.

Keyword

lead magnesium niobate
crystal orientation dependence
thin-films
piezoelectric properties
relaxor ferroelectrics
preferred orientation
zirconate-titanate
ambient gas
ablation
dynamics

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ref (subject category)
art (subject category)

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