电致伸缩
压电
热电性
电场
材料科学
压电系数
单晶
极化(电化学)
极化密度
衍射
凝聚态物理
机电耦合系数
相(物质)
Crystal(编程语言)
电极
光电子学
光学
铁电性
电介质
结晶学
复合材料
化学
物理
磁场
量子力学
物理化学
有机化学
计算机科学
程序设计语言
磁化
作者
B. Khanbabaee,Erik Mehner,Carsten Richter,Juliane Hanzig,Matthias Zschornak,U. Pietsch,Hartmut Stöcker,Tilmann Leisegang,Dirk C. Meyer,Semën Gorfman
摘要
Defect engineering is an effective and powerful tool to control the existing material properties and produce completely new ones, which are symmetry-forbidden in a defect-free crystal. For example, the application of a static electric field to a single crystal of SrTiO3 forms a strained near-surface layer through the migration of oxygen vacancies out of the area beneath the positively charged electrode. While it was previously shown that this near-surface phase holds pyroelectric properties, which are symmetry-forbidden in centrosymmetric bulk SrTiO3, this paper reports that the same phase is strongly piezoelectric. We demonstrate the piezoelectricity of this phase through stroboscopic time-resolved X-ray diffraction under alternating electric field and show that the effective piezoelectric coefficient d33 ranges between 60 and 100 pC/N. The possible atomistic origins of the piezoelectric activity are discussed as a coupling between the electrostrictive effect and spontaneous polarization of this near-surface phase.
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