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首页> 外文期刊>Journal of Physics. Condensed Matter >The giant piezoelectric effect: electric field induced monoclinic phase or piezoelectric distortion of the rhombohedral parent?
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The giant piezoelectric effect: electric field induced monoclinic phase or piezoelectric distortion of the rhombohedral parent?

机译:巨大的压电效应:电场诱导的菱形体的单斜相或压电畸变?

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Lead zinc niobate-lead titanate (PZN-PT) single crystals show very large piezoelectric strains for electric fields applied a long the unit cell edges e.g. [001](R). It has been widely reported that this effect is caused by an electric field induced phase transition from rhombohedral (R3m) to monoclinic (Cm or Pm) symmetry in an essentially continuous manner. Group theoretical analysis using the computer program ISOTROPY indicates phase transitions between R3m and Cm (or Pm) must be discontinuous under Landau theory. An analysis of the symmetry of a strained unit cell in R3m and a simple expansion of the piezoelectric strain equation indicate that the piezoelectric distortion due to an electric field along a cell edge in rhombohedral perovskite-based ferroelectrics is intrinsically monoclinic (Cm), even for infinitesimal electric fields. PZN-PT crystals have up to nine times the elastic compliance of other piezoelectric perovskites and it might be expected that the piezoelectric strains are also very large. A field induced phase transition is therefore indistinguishable from the piezoelectric distortion and is neither sufficient nor necessary to understand the large piezoelectric response of PZN-PT. [References: 30]
机译:铌酸铅锌-钛酸铅(PZN-PT)单晶对施加在较长的晶胞边缘(例如3mm)上的电场显示出非常大的压电应变。 [001](R)。广泛报道该效应是由电场以基本上连续的方式从菱形(R3m)对称到单斜(Cm或Pm)对称引起的相变引起的。使用计算机程序ISOTROPY进行的群理论分析表明,在Landau理论下,R3m和Cm(或Pm)之间的相变必须是不连续的。对R3m中的应变晶胞对称性的分析和压电应变方程的简单展开表明,基于菱面体钙钛矿的铁电体中沿晶胞边缘的电场引起的压电变形本质上是单斜晶(Cm),即使对于极小的电场。 PZN-PT晶体的弹性柔度是其他压电钙钛矿的9倍,可以预期压电应变也非常大。因此,场感应的相变与压电畸变是无法区分的,并且对于理解PZN-PT的大压电响应既不充分也不是必需。 [参考:30]

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