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金属氧化物上平整金属单层磷烯的外延生长

Epitaxial Growth of Flat, Metallic Monolayer Phosphorene on Metal Oxide.

作者信息

Zhou Dechun, Meng Qingling, Si Nan, Zhou Xiong, Zhai Shuwei, Tang Qin, Ji Qingmin, Zhou Miao, Niu Tianchao, Fuchs Harald

机构信息

Herbert Gleiter Institute of Nanoscience, School of Material Science and Engineering , Nanjing University of Science & Technology , No. 200 Xiaolingwei , Nanjing 210094 , China.

School of Physics , Beihang University , No. 37 Xueyuan Road , Haidian District, Beijing 100191 , China.

出版信息

ACS Nano. 2020 Feb 25;14(2):2385-2394. doi: 10.1021/acsnano.9b09588. Epub 2020 Feb 11.

Abstract

In recent years, two-dimensional (2D) group VA elemental materials have attracted considerable interest from physics/chemistry and materials science communities, with particular attention paid to honeycomb blue phosphorene. To date, phosphorene is limited to its α-phase and small sizes because it can only be produced by exfoliating black phosphorus crystals. Here, we report the direct synthesis of high-quality phosphorene on a nonmetallic copper oxide substrate by molecular beam epitaxy. By combining scanning tunneling microscopy/spectroscopy, X-ray photoelectron spectroscopy, and first-principles calculations, we demonstrate the growth intermediates and electronic structures of phosphorene on CuO/Cu(111). Surprisingly, the grown phosphorene has a flat honeycomb lattice, similar to graphene, which exhibits a metallic nature. We reveal that the growth mechanism and morphology of phosphorene are strongly correlated with the surface structures of prepared copper oxide, and the resulting phosphorene can be stabilized after high-temperature annealing above 600 K even in oxygen gas. The high stability is closely related to the irregular Moiré pattern and structural corrugations of phosphorene on CuO/Cu(111) that efficiently relieve the surface strain. These results shed light on future fabrication of large-scale, versatile 2D structures for interconnect and device integration.

摘要

近年来,二维(2D)VA族元素材料引起了物理/化学和材料科学界的广泛关注,其中蜂窝状蓝磷烯受到了特别关注。迄今为止,磷烯仅限于其α相且尺寸较小,因为它只能通过剥离黑磷晶体来制备。在此,我们报告了通过分子束外延在非金属氧化铜衬底上直接合成高质量磷烯。通过结合扫描隧道显微镜/光谱、X射线光电子能谱和第一性原理计算,我们展示了磷烯在CuO/Cu(111)上的生长中间体和电子结构。令人惊讶的是,生长的磷烯具有类似于石墨烯的平坦蜂窝晶格,呈现出金属性质。我们揭示了磷烯的生长机制和形态与制备的氧化铜表面结构密切相关,并且即使在氧气中,在600 K以上的高温退火后,所得磷烯也能稳定存在。这种高稳定性与磷烯在CuO/Cu(111)上的不规则莫尔图案和结构波纹密切相关,这些图案和波纹有效地缓解了表面应变。这些结果为未来用于互连和器件集成的大规模、多功能二维结构的制造提供了启示。

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