Temperature-driven structural transformations in Pb-based perovskite-type relaxors are studied by using polarized Raman spectroscopy, high-resolution powder, and synchrotron single-crystal x-ray diffraction applied to PbSc 0.5 Ta 0.5 O 3 ͑PST͒ and Pb 0.78 Ba 0.22 Sc 0.5 Ta 0.5 O 3 ͑PBST͒. The two compounds were chosen as model systems because PST is a relaxor that exhibits ferroelectric long-range order on cooling, whereas PBST shows canonical relaxor behavior. The temperature evolution of phonon anomalies and the pseudocubic unit-cell parameter for both PST and PBST reveals the existence of a characteristic temperature T ء between the Burns temperature T B and the temperature of the dielectric-permittivity maximum T m. T ء is associated with the coupling of initially nucleated small polar clusters and their aggregation into larger polar clusters. The temperature range between T B and T ء is characterized by a coupling between adjacent off-centered BO 6 octahedra to form initial polar clusters, while the range between T ء and T m is characterized by a coupling between off-centered B cations from adjacent polar clusters. Off-centered Pb atoms exist even above the Burns temperature and their length of coherence governs the coupling between polar regions comprising B-cation offcenter shifts and, consequently, directs the formation of the ferroelectric state to a normal, long-range ordered or nonergodic relaxor state.
Local structural arrangements and corresponding dynamical
effects in relaxor ferroelectrics PbSc1/2Nb1/2O3
and PbSc1/2Ta1/2O3 were studied by Raman
spectroscopy. Polarized Raman spectra of single crystals were
measured at different temperatures in several scattering
configurations. The peaks observed are assigned on the basis of
normal-mode calculations. The effect of small structural
deviations on the atomic vibrations is analysed by calculating
the modes of structural units at various atomic positions. It
is shown that doubling the structural unit is always possible on
a local scale of a few unit cells. The presence of two Raman
peaks originating from the F2u mode shows that
electron-phonon coupling occurs in PbSc1/2B''1/2O3,
thus leading to dynamical off-centre-symmetrical structural
fluctuations. The structural
perturbation consists of the non-coplanarity of Pb and O
atoms in the planes perpendicular to the body diagonal and
deviations of B cations from the centre of BO6 octahedra.
The intensity ratio of the two peaks is sensitive to the degree
of orientational ordering of the lone pairs of Pb atoms within
the Pb-O planes, which is related to the degree of
compositional B'/B'' ordering. The temperature
dependence of the peaks arising from asymmetrical O-B-O
bending, BO3 translation and Pb-localized modes
shows that on cooling different structural changes are
preferential in the two materials studied. In
PbSc1/2Nb1/2O3 the lowering of the temperature
favours the off-centre deviations of the B cations. In
PbSc1/2Ta1/2O3 the temperature decrease
stabilizes the non-coplanarity of the Pb and O atoms in the
planes perpendicular to the body diagonal and enhances the
correlation between the electronic lone pairs of Pb.
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