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首页> 外文期刊>Ultrasonics, Ferroelectrics and Frequency Control, IEEE Transactions on >Influence of Composition and Pressure on the Electric Field-Induced Antiferroelectric to Ferroelectric Phase Transformation in Lanthanum Modified Lead Zirconate Titanate Ceramics
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Influence of Composition and Pressure on the Electric Field-Induced Antiferroelectric to Ferroelectric Phase Transformation in Lanthanum Modified Lead Zirconate Titanate Ceramics

机译:组成和压力对镧改性锆钛酸铅钛酸盐陶瓷中电场诱导的反铁电至铁电相变的影响

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摘要

The electric field-induced phase transformation behavior in lanthanum-doped lead zirconate titanate ceramics was examined by polarization versus electrical field (P-E) measurements carried out from room temperature to 130u000b0;C and under hydrostatic pressures from 20 to 300 MPa. The samples with composition (Pb1¿xLax)(Zr0.90Ti0.10)1-x/4O3 [PLZT x/90/10; x = 2,3,4 at%] were prepared by the standard solid-state reaction method. The analysis at room temperature under atmospheric pressure showed that the increase in the lanthanum content induces a transformation from the typical ferroelectric hysteresis, observed for PLZT 2,3/90/10, to double-hysteresis loops, typical of antiferroelectric phases, for PLZT 4/90/10 under a strong electric field. Hydrostatic pressure- induced and temperature-induced ferroelectric (FE) to antiferroelectric (AFE) phase transformations were examined. The measured hysteresis loops indicated that the FE-AFE phase transformation depends on both temperature and hydrostatic pressure for PLZT 3/90/10. This composition, which is in a ferroelectric state at room temperature under atmospheric pressure, can be transformed into the antiferroelectric phase by the application of a hydrostatic pressure of 100 MPa or by increasing the temperature to around 90u000b0;C. The PLZT 2/90/10 and 4/90/10 compositions displayed predominantly ferroelectric and antiferroelectric behavior, respectively, over the ranges of temperature and hydrostatic pressure examined in the present study.
机译:通过在室温至130u000b0; C的温度和20至300 MPa的静水压力下进行极化与电场(P-E)测量,检查了镧掺杂锆钛酸铅钛酸盐陶瓷中电场诱导的相变行为。具有(Pb1×xLax)(Zr0.90​​Ti0.10)1-x / 4O3 [PLZT x / 90/10; x = 2,3,4at%]通过标准固态反应方法制备。在室温和大气压下的室温分析表明,镧含量的增加导致从PLZT 2,3 / 90/10观察到的典型铁电磁滞转变为PLZT 4转变为反铁电相的典型双磁滞回线。 / 90/10在强电场下。研究了静水压力感应和温度感应的铁电(FE)到反铁电(AFE)的相变。测得的磁滞回线表明,PLZT 3/90/10的FE-AFE相变取决于温度和静压。这种组合物在室温和大气压下处于铁电状态,可以通过施加100 MPa的静水压力或将温度升至90u000b0; C转化为反铁电相。在本研究中研究的温度和静水压力范围内,PLZT 2/90/10和4/90/10成分分别显示出主要的铁电和反铁电行为。

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