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首页> 外文期刊>Physical review, B >Temperature and electric-field induced phase transitions, and full tensor properties of [011](C)-poled domain-engineered tetragonal 0.63Pb(Mg1/3Nb2/3)-0.37PbTiO(3) single crystals
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Temperature and electric-field induced phase transitions, and full tensor properties of [011](C)-poled domain-engineered tetragonal 0.63Pb(Mg1/3Nb2/3)-0.37PbTiO(3) single crystals

机译:温度和电场诱导的相变和[011](C)极化域工程四方0.63Pb(Mg1 / 3Nb2 / 3)-0.37PbTiO(3)单晶的全张量性质

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摘要

The phase-transition sequence of 0.67Pb(Mg1/3Nb2/3)-0.37PbTiO(3) (PMN-0.37PT) single crystals driven by the electric (E) field and temperature is comprehensively studied. Based on the strain-E field loop, polarization-E field loop, and the evolution of domain configurations, the E field along the [011](C) induced phase transitions have been confirmed to be as follows: tetragonal (T) -> monoclinic (M-C) -> single domain orthorhombic (O) phase. As the E field decreases, the induced O phase cannot be maintained and transformed to the M-C phase, then to the coexistence state of M-C and T phases. In addition, the complete sets of dielectric, piezoelectric, and elastic constants for the [011](C)-poled domain-engineered PMN-0.37PT single crystal were measured at room temperature, which show high longitudinal dielectric, piezoelectric, and electromechanical properties (epsilon(T)(33) = 10 661, d(33) = 1052 pC/N, and k(33) = 0.766). Our results revealed that the M-C phase plays an important role in the high electromechanical properties of this domain-engineered single crystal. The temperature dependence of the domain configuration revealed that the volume fraction of the M-C phase decreases with temperature accompanied by the reduction of epsilon(T)(33), d(31), and k(31) due to the substantially smaller intrinsic properties of the T phase.
机译:全面研究了由电场和温度驱动的0.67Pb(Mg1 / 3Nb2 / 3)-0.37PbTiO(3)(PMN-0.37PT)单晶的相变序列。基于应变-E场回路,极化-E场回路和畴结构的演变,已确认沿着[011](C)诱导的相变的E场如下:四边形(T)->单斜晶(MC)->单畴正交(O)相。随着E场的减小,诱导的O相无法维持并转变为M-C相,然后转变为M-C和T相的共存状态。另外,在室温下测量了[011](C)极化域工程PMN-0.37PT单晶的完整介电常数,压电常数和弹性常数,这些单晶具有很高的纵向介电常数,压电和机电性能(ε(T)(33)= 10661,d(33)= 1052 pC / N,k(33)= 0.766)。我们的结果表明,M-C相在这种畴工程单晶的高机电性能中起着重要作用。畴构型的温度依赖性表明,MC相的体积分数随温度降低而伴随着ε(T)(33),d(31)和k(31)的降低,这是由于MC的内在性质要小得多。 T期。

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