Vinogradov Nikolay A, Lyalin Andrey, Taketsugu Tetsuya, Vinogradov Alexander S, Preobrajenski Alexei
MAX IV Laboratory , Lund University , 22100 Lund , Sweden.
Institute for Chemical Reaction Design and Discovery (WPI-ICReDD) , Hokkaido University , Kita 21 Nishi 10 , Sapporo 001-0021 , Japan.
ACS Nano. 2019 Dec 24;13(12):14511-14518. doi: 10.1021/acsnano.9b08296. Epub 2019 Dec 5.
Artificial two-dimensional (2D) materials, which host electronic or spatial structure and properties not typical for their bulk allotropes, can be grown epitaxially on atomically flat surfaces; the design and investigation of these materials are thus at the forefront of current research. Here we report the formation of borophene, a planar boron allotrope, on the surface of Ir(111) by exposing it to the flux of elemental boron and consequent annealing. By means of scanning tunneling microscopy and density functional theory calculations, we reveal the complex structure of this borophene, different from all planar boron allotropes reported earlier. This structure forms as a single phase on iridium substrate in a wide range of experimental conditions and may be then decoupled from the substrate intercalation. These findings allow for production of large, defect-free borophene sheets and advance theoretical understanding of polymorphism in borophene.
人工二维(2D)材料具有与其块状同素异形体不同的电子或空间结构及特性,可在原子级平整表面上外延生长;因此,这些材料的设计与研究处于当前研究的前沿。在此,我们报告通过将铱(Ir(111))表面暴露于元素硼通量并随后进行退火,形成了一种平面硼同素异形体——硼烯。借助扫描隧道显微镜和密度泛函理论计算,我们揭示了这种硼烯的复杂结构,它不同于先前报道的所有平面硼同素异形体。在广泛的实验条件下,这种结构在铱衬底上以单相形式形成,然后可通过插层与衬底分离。这些发现有助于制备大面积、无缺陷的硼烯片,并推动对硼烯多态性的理论理解。