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Oxygen Vacancy-Tuned Physical Properties in Perovskite Thin Films with Multiple B-site Valance States

机译:具有多个B位价态的钙钛矿薄膜中氧空位调节的物理性质

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摘要

Controlling oxygen content in perovskite oxides with ABO3 structure is one of most critical steps for tuning their functionality. Notably, there have been tremendous efforts to understand the effect of changes in oxygen content on the properties of perovskite thin films that are not composed of cations with multiple valance states. Here, we study the effect of oxygen vacancies on structural and electrical properties in epitaxial thin films of SrFeO3−δ (SFO), where SFO is a compound with multiple valance states at the B site. Various annealing treatments are used to produce different oxygen contents in the films, which has resulted in significant structural changes in the fully strained SFO films. The out-of-plane lattice parameter and tetragonality increase with decreasing oxygen concentration, indicating the crystal structure is closely related to the oxygen content. Importantly, variation of the oxygen content in the films significantly affects the dielectric properties, leakage conduction mechanisms, and the resistive hysteresis of the materials. These results establish the relationship between oxygen content and structural and functional properties for a range of multivalent transition metal oxides.
机译:控制具有ABO3结构的钙钛矿氧化物中的氧含量是调节其功能的最关键步骤之一。值得注意的是,已经作出巨大的努力来理解氧含量的变化对钙钛矿薄膜的性能的影响,所述钙钛矿薄膜不是由具有多个价态的阳离子组成的。在这里,我们研究了氧空位对SrFeO3-δ(SFO)外延薄膜的结构和电学性质的影响,其中SFO是在B位置具有多个价态的化合物。各种退火处理用于在薄膜中产生不同的氧含量,这导致在完全应变的SFO薄膜中发生重大的结构变化。面外晶格参数和四方性随氧浓度的降低而增加,表明晶体结构与氧含量密切相关。重要的是,薄膜中氧含量的变化会显着影响材料的介电性能,泄漏传导机制和电阻滞后。这些结果建立了一系列多价过渡金属氧化物的氧含量与结构和功能性质之间的关系。

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