ISSN 0862-5468 (Print), ISSN 1804-5847 (online) 

Ceramics-Silikáty 47, (1) 8 - 12 (2003)


MICROSTRUCTURE AND ELECTRICAL RESPONSE OF 0.9Pb(Mg1/3Nb2/3)O₃-0.1PbTiO₃ RELAXOR CERAMICS
 
Kovaľ Vladimír, Briančin Jaroslav
 
Institute of Materials Research of Slovak Academy of Sciences Watsonova 47, 043 53 Košice, Slovak Republic

Keywords: PMN-PT, Dielectric, Piezoelectric, Ferroelectric properties, Diffuse phase transition
 

Ceramic samples of a solid solution of 10 mol.% lead titanate PbTiO₃ (PT) in lead magnesium niobate Pb(Mg1/3Nb2/3)O₃ (PMN) were investigated from the view-point of phase transition behavior and electrical properties. Dielectric spectroscopy in a frequency region of 10² - 10⁶ Hz was carried out to study the temperature and frequency dependence of the weak-field dielectric response in 0.9PMN-0.1PT material prepared via a columbite precursor route. The temperature Tm of the observed maxima in the dielectric permittivity (εm) was found to shift from 45.4 to 58.5°C and εm decreased from 4500 to 4060 as the frequency increased from 100 Hz to 1 MHz. The characteristics of a diffuse phase transition (DPT) behavior (γ ≈ 1.8 and δγ ≈ 30°C) were determined using an extended Curie-Weiss law. The relaxor features of ferroelectrics were also demonstrated by a "slim" ferroelectric hysteresis loop. Non-zero values of the piezoelectric parameters (kp ≈ 1.6 %, d₃₁ ≈ -3.6 pC/N) and spontaneous polarization (Ps ≈ 2.4 μC/cm² ) were observed at 80°C, indicating the existence of nanopolar regions in the structure far above the Tm.


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