Nanotwins And Phases In High-Strain Pb(Mg1/3nb2/3)(1-X)Tixo3 Crystal

C S Tu, C M Hsieh,R R Chien,V H Schmidt, F T Wang, W S Chang

JOURNAL OF APPLIED PHYSICS(2008)

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摘要
This work is a study of the thermal stability of (001)-cut Pb(Mg1/3Nb2/3)(1-x)TixO3 (x=0.30) single crystals before and after an electric (E)-field poling by means of dielectric permittivity, hysteresis loop, domain structure, polarization current, and x-ray diffraction. An R(R-NT)-R(R-NT)/T(T-NT)-T(T-NT)-C transition sequence was observed upon heating in the unpoled sample. R, R-NT, T, T-NT, and C are the rhombohedral, rhombohedral nanotwin, tetragonal, tetragonal nanotwin, and cubic phases, respectively. R/T indicates coexistence of the R and T phases. R(R-NT) and T(T-NT) indicate that the R-NT and T-NT structures mimic monoclinic phases in the R and T matrices, respectively. After a prior E-field poling, an R(R-NT)-T(T-NT)-C phase sequence takes place upon heating. The dielectric permittivity and current density evidenced an additional polarization at 355 K, which is associated with the vanishing of the dielectric dispersion, which reappears near 410 K and remains up to the Burns temperature T-B=510 K. This study suggests that nanotwins (R-NT and T-NT) can play an important role in high-strain piezoelectric crystals while phase transition takes place. Under E=38 kV/cm, [001] T domains randomly appeared in the matrix, suggesting that the matrix consists of a glassy matrix and ferroelectric nanoclusters. (C) 2008 American Institute of Physics.
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关键词
magnesium,piezoelectric material,hysteresis loop,thermal stability,current density,phase transition,x ray diffraction,single crystal
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