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首页> 外文期刊>Scientific reports. >Built-in Electric Field Induced Mechanical Property Change at the Lanthanum Nickelate/Nb-doped Strontium Titanate Interfaces
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Built-in Electric Field Induced Mechanical Property Change at the Lanthanum Nickelate/Nb-doped Strontium Titanate Interfaces

机译:内置电场诱导镍酸镧/ Nb掺杂钛酸锶界面的机械性能变化

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The interactions between electric field and the mechanical properties of materials are important for the applications of microelectromechanical and nanoelectromechanical systems, but relatively unexplored for nanoscale materials. Here, we observe an apparent correlation between the change of the fractured topography of Nb-doped SrTiO3 (Nb:STO) within the presence of a built-in electric field resulting from the Schottky contact at the interface of a metallic LaNiO3 thin film utilizing cross-sectional scanning tunneling microscopy and spectroscopy. The change of the inter-atomic bond length mechanism is argued to be the most plausible origin. This picture is supported by the strong-electric-field-dependent permittivity in STO and the existence of the dielectric dead layer at the interfaces of STO with metallic films. These results provided direct evidence and a possible mechanism for the interplay between the electric field and the mechanical properties on the nanoscale for perovskite materials.
机译:电场与材料的机械性能之间的相互作用对于微机电系统和纳米机电系统的应用很重要,但对于纳米级材料却相对未开发。在这里,我们观察到在界面处肖特基接触产生的内置电场存在下,掺Nb的SrTiO 3 (Nb:STO)的断裂形貌变化之间存在明显的相关性。截面扫描隧道显微镜和光谱法研究金属LaNiO 3 薄膜。原子间键长机制的变化被认为是最合理的起源。 STO中与电场有关的介电常数以及STO与金属膜之间的介电死层的存在为该图提供了支持。这些结果为钙钛矿材料的纳米尺度上的电场和机械性能之间的相互作用提供了直接的证据和可能的机制。

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