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首页> 外文期刊>AIP Advances >Domain structures and correlated out-of-plane and in-plane polarization reorientations in Pb(Zr0.96Ti0.04)O3 single crystal via piezoresponse force microscopy
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Domain structures and correlated out-of-plane and in-plane polarization reorientations in Pb(Zr0.96Ti0.04)O3 single crystal via piezoresponse force microscopy

机译:压电响应力显微镜观察Pb(Zr0.96Ti0.04)O3单晶的畴结构及相关的面外和面内偏振重新取向

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Pb(Zr1-xTix)O3 single crystal with a low titanium content (x = 4%) was studied by the piezoresponse force microscopy (PFM) and X-ray diffraction (XRD). The XRD studies showed that the crystal faces are orthogonal to the principal cubic axes and confirmed the existence of an intermediate phase between the high-temperature paraelectric (PE) phase and the low-temperature antiferroelectric (AFE) one. A significant temperature hysteresis of phase transitions was observed by the XRD: On heating, the AFE state transforms into the intermediate one at about 373 K and the PE phase appears at 508 K, whereas on cooling the intermediate phase forms at 503 K and persists down to at least 313 K. The PFM investigation was focused on the intermediate phase and involved measurements of both out-of-plane and in-plane electromechanical responses of the (001)-oriented crystal face. The PFM images revealed the presence of polarization patterns switchable by an applied electric field, which confirms the ferroelectric character of the intermediate phase. Importantly, two types of regular domain structures were found, which differ by the spatial orientation of domain walls. The reconstruction of polarization configurations in the observed domain structures showed that one of them is a purely ferroelectric 180° structure with domain walls orthogonal to the crystal surface and parallel to one of the ?111? pseudocubic directions. Another one is a ferroelectric-ferroelastic domain structure with the 71° walls parallel to the {101} or {011} crystallographic planes. Remarkably, this domain structure shows correlated out-of-plane and in-plane polarization reorientations after the poling with the aid of the microscope tip.
机译:通过压电响应研究了钛含量低(x = 4%)的Pb(Zr 1-x Ti x )O 3 单晶力显微镜(PFM)和X射线衍射(XRD)。 X射线衍射研究表明,晶面与主立方轴正交,并证实在高温顺电(PE)相和低温反铁电(AFE)相之间存在中间相。 XRD观察到明显的相变温度滞后:加热时,AFE状态在约373 K处转变为中间相,PE相在508 K处出现,而冷却时,中间相在503 K处形成并持续下降至少为313K。PFM研究集中在中间阶段,涉及对(001)取向晶面的面外和面内机电响应的测量。 PFM图像揭示了极化图案的存在,该极化图案可通过施加的电场进行切换,这证实了中间相的铁电特性。重要的是,发现了两种类型的规则畴结构,它们的区别在于畴壁的空间方向。在观察到的畴结构中极化构型的重建表明,其中之一是纯铁电180°结构,其畴壁正交于晶体表面并平行于其中的一个“ 111”晶格。伪立方方向。另一个是具有平行于{101}或{011}晶面的71°壁的铁电-铁弹性畴结构。值得注意的是,在借助显微镜尖端极化后,该畴结构显示出相关的面外和面内偏振重新定向。

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