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Diffused phase transition of polycrystalline (Ba0.80Sr0.20)TiO3

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Języki publikacji
EN
Abstrakty
EN
Purpose: The purpose of this work was to determinate the influence of the 20% Sr substitutions (in sublattice A) on changes of the character of phase transition (PT) in comparison with pure barium titanate BaTiO3 (BT). Design/methodology/approach: Polycrystalline samples of (Ba0.80Sr0.20)TiO3 (BS20T) were prepared by calcinations method at temperature 1620 K. X-ray measurements were executed from 10 deg to 120 deg with the 0.008 deg step. Images of the morphology of the samples were taken by means of electron microscope Philips SEM 525M at room temperature. Dielectric measurements were performed with application of Quatro Cryosystem 4.0 Agilent Precision LRC meter HP4824A equipped with WinDETA 5.62 software Novocontrol. Measurements were taken under cooling with 2 K/min speed. Measuring electric field frequency was from the range 20 Hz - 1 MHz. Findings: The difference between the value of temperature of structural transition (cubic-tetragonal) equal 310K and the temperature Tm (the temperature of maximum of real part electric permittivity) equal 340 K was affirmed. It was affirmed, that 20% substitution of Sr ions changed the type of phase transition. The transition was strongly diffused (DPT). The polar character of this solid solution was also observed in a broad temperature range (in the paraelectric phase too). It is connected with the occurrence of polar regions (clusters). Research limitations/implications: The results can be used to describe changes of PT in the DPT solid solutions with ferroactive substitutions in sublattice A. Originality/value: Value of this work relies on the experimental examination of the dielectric properties of (Ba0.80Sr0.20)TiO3 (BS20T) solid solution. The temperature of the DPT was calculated. The low value of phase angle is connected with the existence of the polar regions.
Rocznik
Strony
88--91
Opis fizyczny
Bibliogr. 16 poz.
Twórcy
autor
autor
autor
autor
autor
  • Institute of Physics, Pedagogical University, ul. Podchorążych 2, 30-084 Kraków, Poland, ckajtoch@ap.krakow.pl
Bibliografia
  • [1] C. Kajtoch, Dissertation, Halle - Wittenberg, 1990.
  • [2] V. Mueller, L. Jaeger, H. Beige, H.P. Abicht, T. Mueller, Thermal expansion in the Burns-phase of barium titanate stannate, Solid State Communication 129/12 (2004) 757-760.
  • [3] W. Bąk, Characterisation of Ba1-xNaxTi1-xNbx ceramic by dielectric spectroscopy, Archives of Materials Science and Engineering 34/1 (2008) 5-8.
  • [4] M. Gabryś, Dielectric properties of polycrystalline (Ba0.60Sr0.40)O3, Archives of Materials Science and Engineering 34/1 (2008) 27-30.
  • [5] A.J. Moulson, J.M. Herbert, Materials properties and Applications, Chapman and Hall, London, 1990.
  • [6] W. Heywang, Barium Titanate as a PTC thermistor, Solid- State Electric 3 (1961) 51-55.
  • [7] G.H. Jonker, Some aspects of semiconducting barium titanate, Solid-State Electronics 7 (1964) 895-899.
  • [8] G. Schmidt, Diffusive phase transitions, Ferroelectrics 78 (1988) 199-206.
  • [9] G. Burns, F.H. Dacol, Polarization in the cubic phase of BaTiO3, Solid State Communication 42 (1982) 9-12.
  • [10] N. Ichinose, Y. Yokomizo, T. Takahashi, The behaviour of the micro domains he the diffuse phase transition ferroelectrics, Acta Crystallographica A28/4 (1972) 187-190.
  • [11] R. Comes, M. Lambert, A. Guinier, Désordre linéaire dans les cristaux (cas du silicium, du quartz, et des pérovskites ferroélectriques) Acta Crystallographica A26 (1970) 244-254 (in French).
  • [12] T. Dobrowolski, Kink production in the presence of random distributed impurities, Physical Review E 65 (2002) 046133.
  • [13] T. Dobrowolski, Kinks of arbitrary width, Physical Review E66 (2002) 066112.
  • [14] J. Ravez, A. Simon, Non - Stoichiometric Perovskites Derived from BaTiO3 with and Ferroelectric Relaxor Behaviour, Physica Status Solidi 178 (2000) 793-797.
  • [15] C. Kajtoch, Electric properties of polycrystalline Pb(Cd1/3Nb2/3)O3, Ferroelectrics Letters 25 (1999) 81-84.
  • [16] C. Kajtoch, W. Bąk, F. Starzyk, M. Gabryś, Study of phase transition specific in polycrystalline Pb(Cd1/3Nb2/3)O3, Archives of Materials Science and Engineering 29/1 (2008) 20-23.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSL8-0030-0012
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