论文标题

将配置复杂性应用于2D Ruddlesden-Popper晶体结构

Applying configurational complexity to the 2D Ruddlesden-Popper crystal structure

论文作者

Zhang, Wenrui, Mazza, Alessandro R., Skoropata, Elizabeth, Mukherjee, Debangshu, Musico, Brianna L., Zhang, Jie, Keppens, Veerle, Zhang, Lihua, Kisslinger, Kim, Stavitski, Eli, Brahlek, Mathew, Freeland, John W., Lu, Ping, Ward, Thomas Z.

论文摘要

2D层次的Ruddlesden-Popper晶体结构可以容纳广泛的功能重要行为。在这里,我们使用熵稳定辅助综合建立了二维分层ruddlesden-popper(RP)结构的非凡构型障碍。 A2CUO4 RP氧化铜氧化物具有五个组件(LA,PR,ND,SM,EU)的A位置sublattice,并使用脉冲激光沉积设计并制造成外观单晶膜中。通过比较(LA0.2PR0.2ND0.2SM0.2EU0.2)2CUO4晶体在相同条件下生长但不同的底物生长,发现异上型菌株在晶体相形成中起重要作用。当在近晶格匹配的底物上生长时,高熵氧化物膜具有带有均匀的A位阳离子混合和方形平面CUO4单元的T'Type RP结构,但是,在较强的压缩应变下生长会导致单个晶体非RP立方相与Cux2O4旋转结构一致。这些观察结果是使用X射线衍射,原子分辨率扫描透射电子显微镜,能量分散性X射线光谱和X射线吸收光谱测量的一系列组合表征进行的。在这类丘陵材料中设计配置复杂性并在2D层次的RP和3D立方晶体结构之间移动,为与磁磁性,非常规超导性,铁电性,催化和离子运输相关的新设计策略打开了许多机会。

The 2D layered Ruddlesden-Popper crystal structure can host a broad range of functionally important behaviors. Here we establish extraordinary configurational disorder in a two dimensional layered Ruddlesden-Popper (RP) structure using entropy stabilization assisted synthesis. A protype A2CuO4 RP cuprate oxide with five components (La, Pr, Nd, Sm, Eu) on the A-site sublattice is designed and fabricated into epitaxial single crystal films using pulsed laser deposition. By comparing (La0.2Pr0.2Nd0.2Sm0.2Eu0.2)2CuO4 crystals grown under identical conditions but different substrates, it is found that heteroepitaxial strain plays an important role in crystal phase formation. When grown on a near lattice matched substrate, the high entropy oxide film features a T'-type RP structure with uniform A-site cation mixing and square-planar CuO4 units, however, growing under strong compressive strain results in a single crystal non-RP cubic phase consistent with a CuX2O4 spinel structure. These observations are made with a range of combined characterizations using X-ray diffraction, atomic-resolution scanning transmission electron microscopy, energy-dispersive X-ray spectroscopy, and X-ray absorption spectroscopy measurements. Designing configurational complexity and moving between 2D layered RP and 3D cubic crystal structures in this class of cuprate materials opens many opportunities for new design strategies related to magnetoresistance, unconventional superconductivity, ferroelectricity, catalysis, and ion transport.

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