COMPOSITIONAL ORDERING AND PHASE-TRANSITIONS IN PB(YB0.5NB0.5)O3

被引:45
作者
BOKOV, AA
SHONOV, VY
RAYEVSKY, IP
GAGARINA, ES
KUPRIYANOV, MF
机构
关键词
D O I
10.1088/0953-8984/5/31/013
中图分类号
O469 [凝聚态物理学];
学科分类号
070205 ;
摘要
The possibility of varying the compositional long-range order parameter s and the influence of s on the ferroelectric properties of pure and Li-doped Pb(Yb0.5Nb0.5)03 ceramics have been studied. X-ray diffraction and dielectric measurements were used. A compositional order-disorder phase transition was discovered at 1120-degrees-C (in doped ceramics). It was shown that in the course of material synthesis the compositionally ordered perovskite structure is formed at comparatively low temperatures (800-degrees-C) and the s value may be reduced during sintering at higher temperatures. The pure ceramic remains ordered after sintering because the rate of s change in it is much lower than in the doped material. Low-temperature sintered doped ceramics are characterized by spatial non-homogeneities of s, causing the appearance of two (or more) anomalies in the temperature dependence of the permittivity. The T-s phase diagram has been investigated. Materials with a low s (s < s(c)) show a diffuse transition from high-temperature paraelectric phase to ferroelectric phase (at T(C) = 115-degrees-C when s = 0). For materials with a high s (s > s(c)) a paraelectric to antiferroelectric phase transition is observed. Thus there is a triple point at s = s(c). The Curie temperature T(C) is quadratic in s and a minimum in the T(C)(s) curve is observed at the triple point, which is in agreement with the earlier theoretical treatment of Bokov et al.
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页码:5491 / 5504
页数:14
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