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Controllable Ferroelastic Switching in Epitaxial Self-Assembled Aurivillius Nanobricks

机译:外延自组装的Aurivillius纳米克里克斯的可控渡铬开关

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摘要

Layered perovskites with Aurivillius phase have drawn tremendous attention recently, owing to their high ferroelectric Curie temperatures, large spontaneous polarization, and fatigue-free and environment-friendly characteristics. Bi2WO6 is one of the simplest members in the Aurivillius family with superior ferroelastic and photoelectrochemical behaviors. The self-assembly fabrication of its nanoarchitectures and strategic modulation of their ferroelastic switching are crucial toward highly efficient nanoscale applications. In this work, Bi2WO6 nanobrick arrays were epitaxially grown along the orthorhombic direction in a self-assembled way. Such a nanoscale topology supports out-of-plane and in-plane vectors of ferroelectric polarizations, enabling a perpendicular voltage manipulation of these emerging ferroelectric/elastic domains. Combining the scanning probe technique and transmission electron microscopy, we confirmed the in-plane polarization vectors of 78.6 and 101.4 degrees within the crystallographic axes of the nanobricks with respect to the (110) plane of the substrate. Thus, this work provides new opportunities for ferroelectric/elastic engineering in Bi2WO6 nanostructures for a wide range of applications, such as sensing, actuating, and catalysis.
机译:由于其高铁电居里温度,巨大的自发极化和无疲劳和环保特性,近期具有Aurivillius阶段的分层蠕动阶层普遍认为。 Bi2wo6是Aurivillius系列中最简单的成员之一,具有优越的枯叉弹性和光电化学行为。其纳米建筑的自组装制造和它们的氢弹性切换的战略调制对于高效的纳米级应用至关重要。在这项工作中,Bi2WO6纳米克里克阵列以自组装方式沿着矫正方向沿着矫正方向延伸。这种纳米级拓扑支持平面外和铁电偏振的平面向量,使得这些出现的铁电/弹性域的垂直电压操纵能够。组合扫描探针技术和透射电子显微镜,我们在纳米克里克的晶体轴上的平面内偏振矢量相对于基板的(110)平面确认了78.6和101.4度。因此,这项工作为Bi2WO6纳米结构中的铁电/弹性工程提供了新的机会,用于广泛的应用,例如传感,致动和催化。

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