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Atomic engineering of metastable BeO_6 octahedra in a rocksalt framework

机译:岩石盐骨架中亚稳态BeO_6八面体的原子工程

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An atomic structure is widely recognized as the key that determines the physical properties of a material. A critical challenge to engineer the atomic structure is that many useful crystals are metastable under ambient conditions and difficult to realize. Here, it is demonstrated that highly metastable atomic arrangements can be synthesized in the isostructural matrix via atomic layer deposition. Studying highly metastable BeO6 octahedra in rocksalt MgO as a model system, it is experimentally and theoretically shown that the single-phase BexMg1-xO thin films adopt rocksalt structure over wurtzite for the composition range x < 0.21. The single-phase rocksalt films exhibit almost doubled dielectric constants with the presence of BeO6 octahedra. Such atomic environment engineering may create intriguing properties that have not been realized in the constituent materials. This work provides excellent opportunities to explore unprecedented materials properties via engineering metastable atomic arrangements using the isostructural matrix approach.
机译:原子结构被广泛认为是决定材料物理性质的关键。设计原子结构的关键挑战是许多有用的晶体在环境条件下是亚稳的,并且难以实现。在此证明,可以通过原子层沉积在同构基质中合成高度亚稳态的原子排列。以岩盐MgO中的高亚稳态BeO6八面体为模型系统进行研究,从理论和实验上证明,单相BexMg1-xO薄膜在纤锌矿上采用岩盐结构,组成范围x <0.21。在BeO6八面体的存在下,单相岩盐膜的介电常数几乎翻倍。这样的原子环境工程可以产生在构成材料中尚未实现的有趣特性。这项工作为利用等结构矩阵方法通过工程亚稳原子排列探索前所未有的材料性能提供了绝佳的机会。

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