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BiFeO3 中的应变驱动型准同型相界

A strain-driven morphotropic phase boundary in BiFeO3.

机构信息

Department of Materials Science and Engineering, University of California, Berkeley, Berkeley, CA 94720, USA.

出版信息

Science. 2009 Nov 13;326(5955):977-80. doi: 10.1126/science.1177046.

Abstract

Piezoelectric materials, which convert mechanical to electrical energy and vice versa, are typically characterized by the intimate coexistence of two phases across a morphotropic phase boundary. Electrically switching one to the other yields large electromechanical coupling coefficients. Driven by global environmental concerns, there is currently a strong push to discover practical lead-free piezoelectrics for device engineering. Using a combination of epitaxial growth techniques in conjunction with theoretical approaches, we show the formation of a morphotropic phase boundary through epitaxial constraint in lead-free piezoelectric bismuth ferrite (BiFeO3) films. Electric field-dependent studies show that a tetragonal-like phase can be reversibly converted into a rhombohedral-like phase, accompanied by measurable displacements of the surface, making this new lead-free system of interest for probe-based data storage and actuator applications.

摘要

压电材料可以将机械能转换为电能,反之亦然,其典型特征是在形态转变区存在两种密切共存的相。通过电切换这两种相,可以获得较大的机电耦合系数。受全球环境问题的驱动,目前强烈需要发现用于器件工程的实用无铅压电材料。我们使用外延生长技术与理论方法的结合,证明了通过无铅压电铁酸铋(BiFeO3)薄膜的外延限制形成形态转变区。电场相关研究表明,四方相可以可逆地转换为菱方相,同时伴随着表面的可测量位移,这使得这种新的无铅体系在基于探针的数据存储和执行器应用中具有吸引力。

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