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One-atom-thick 2D copper oxide clusters on graphene

机译:单原子厚度的二维氧化铜集群石墨烯

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摘要

The successful isolation and remarkable properties of graphene have recently triggered investigation of two-dimensional (2D) materials from layered compounds; however, one-atom-thick 2D materials without bulk layered counterparts are scarcely reported. Here we report the structure and properties of novel 2D copper oxide studied by experimental and theoretical methods. Electron microscopy observations reveal that copper oxide can form monoatomic layers with an unusual square lattice on graphene. Density functional theory calculations suggest that oxygen atoms at the centre of the square lattice stabilizes the 2D Cu structure, and that the 2D copper oxide sheets have unusual electronic and magnetic properties different from 3D bulk copper oxide.
机译:成功的隔离和非凡的属性石墨烯最近引发的调查从分层的二维(2 d)的材料化合物;没有散装分层同行几乎报道。小说研究的2 d氧化铜的属性实验和理论方法。显微镜观察显示,铜氧化物可以形成单原子层和一个不寻常的广场吗在石墨烯晶格。计算表明,氧原子在中心广场的晶格稳定的2 d铜结构,2 d氧化铜表不寻常的电子和磁性吗不同于3 d散装铜氧化物。

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