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Strain-induced creation and switching of anion vacancy layers in perovskite oxynitrides

机译:应变诱导的钙钛矿氮氧化物中阴离子空位层的产生和切换

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Perovskite oxides can host various anion-vacancy orders, which greatly change their properties, but the order pattern is still difficult to manipulate. Separately, lattice strain between thin film oxides and a substrate induces improved functions and novel states of matter, while little attention has been paid to changes in chemical composition. Here we combine these two aspects to achieve strain-induced creation and switching of anion-vacancy patterns in perovskite films. Epitaxial SrVO3 films are topochemically converted to anion-deficient oxynitrides by ammonia treatment, where the direction or periodicity of defect planes is altered depending on the substrate employed, unlike the known change in crystal orientation. First-principles calculations verified its biaxial strain effect. Like oxide heterostructures, the oxynitride has a superlattice of insulating and metallic blocks. Given the abundance of perovskite families, this study provides new opportunities to design superlattices by chemically modifying simple perovskite oxides with tunable anion-vacancy patterns through epitaxial lattice strain. Properties of perovskite oxides can be changed by manipulating anion-vacancy order patterns, but they are difficult to control. Here the authors show strain-induced creation and switching of anion vacancies in perovskite films in which the direction or periodicity of anion-vacancy planes is altered depending on the substrate employed.
机译:钙钛矿氧化物可以举办各种阴离子空缺订单,这大大改变了它们的性质,但订单模式仍难以操纵。另外,薄膜氧化物和衬底之间的晶格应变诱导改善的功能和新颖的物质状态,而是对化学成分的变化很少关注。在这里,我们将这两个方面结合起来实现应变诱导的钙钛矿薄膜中的阴离子空位模式的制作和切换。外延SRVO3薄膜通过氨处理转换为阴离子缺乏氮氧氮化物,其中缺陷平面的方向或周期性根据所用基板而改变,与晶体取向的已知变化不同。第一原理计算验证了其双轴应变效应。与氧化物异质结构一样,氧氮化物具有绝缘和金属块的超晶格。鉴于佩罗夫斯基特家庭的丰富,本研究提供了通过通过外延晶格菌株的可调谐阴离子空位模式进行化学修饰简单的钙钛矿氧化物来设计超晶格的新机会。通过操纵阴离子空位阶模式,可以改变钙钛矿氧化物的性质,但它们难以控制。在这里,作者显示了应变诱导的植物膜中的阴离子缺点的创建和切换,其中阴离子空间平面的方向或周期性根据所用基材改变。

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