Dipolar-glass-like relaxor ferroelectric behaviour in the 0.5BaTiO3-0.5Bi(Mg1/2Ti1/2)O3 electroceramic
Date
2013
Authors
Wang, Jian
Liu, Yun
Li, Qian
Lau, Kenny
Withers, Ray L.
Li, Zhenrong
Xu, Zhuo
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Publisher
American Institute of Physics (AIP)
Abstract
In this study, the dielectric and ferroelectric switching behaviour of 0.5BaTiO3-0.5Bi(Mg1/2Ti1/2)O3
(BT-BMT) ceramics are investigated. The BT-BMT ceramic exhibits a typical dipolar-glass-like,
dielectric polarisation relaxation. This is attributed to the 15 distinct possible local A4B2 configurations
around the O ions and the effect this unavoidable local compositional variability has on the dipole
relaxation behaviour of inherent {1-D h111} dipole chains, arising from correlated off-centre
displacements of Bi3+ and Ti4+ ions along local {111} directions. On the other hand, switchable
polarisation under strong applied electric fields is observed on different length scales accompanied by
the appearance of strong polarisation relaxation, as observed via time-delayed piezoresponse
hysteresis loop measurements. These experimental results demonstrate that this BT-BMT ceramic
is relaxor ferroelectric in nature, although it exhibits dipolar-glass-like dielectric relaxation behaviour.
Description
Keywords
dielectric and ferroelectric, switching behaviour, 0.5BaTiO3-0.5Bi(Mg1/2Ti1/2)O3 (BT-BMT), BT-BMT ceramic, dipolar-glass-like, local A4B2, O ions, dipole chains, polarisation, relaxor ferroelectric
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Applied Physics Letters
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Journal article
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