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Epitaxial antiperovskite/perovskite heterostructures for materials design

机译:外延antiperovskite / perovskite材料设计的异质结构

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Engineered heterostructures formed by complex oxide materials are a rich source of emergent phenomena and technological applications. In the quest for new functionality, a vastly unexplored avenue is interfacing oxide perovskites with materials having dissimilar crystallochemical properties. Here, we propose a unique class of heterointerfaces based on nitride antiperovskite and oxide perovskite materials as a previously unidentified direction for materials design. We demonstrate the fabrication of atomically sharp interfaces between nitride antiperovskite Mnsub3/subGaN and oxide perovskites (Lasub0.3/subSrsub0.7/sub)(Alsub0.65/subTasub0.35/sub)Osub3/sub and SrTiOsub3/sub. Using atomic-resolution imaging/spectroscopic techniques and first-principles calculations, we determine the atomic-scale structure, composition, and bonding at the interface. The epitaxial antiperovskite/perovskite heterointerface is mediated by a coherent interfacial monolayer that interpolates between the two antistructures. We anticipate our results to be an important step for the development of functional antiperovskite/perovskite heterostructures, combining their unique characteristics such as topological properties for ultralow-power applications.
机译:由复合氧化物材料形成的工程异质结构是一种丰富的新兴现象和技术应用来源。在寻求新功能的过程中,巨大未开发的大道是用具有不同结晶特性的材料互置氧化物钙酸盐。在这里,我们提出了一种基于氮化物止咳渣和氧化物钙钛矿材料的独特类异料蔗渣作为先前未识别的材料设计方向。我们证明了在氮化物胃癌胃胃癌Mn 3 / sup> GaN和氧化物钙酸盐之间的原子尖锐界面的制造(La 0.3 Sr 0.7 )(Al 0.65 ta 0.35 )O 3 和srtio 3 。使用原子分辨率的成像/光谱技术和第一原理计算,我们确定界面处的原子尺度结构,组成和粘合。外延antiperovskite / perovskite异化表面由相干界面单层介导,所述界面单层介导,所述界面单层在两个面积之间插入。我们预计我们的结果是开发功能性Antiperovskite / Perovskite异质结构的一个重要步骤,它们的独特特性如超级电力应用的拓扑特性。

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