Andryushechkin B V, Pavlova T V
Prokhorov General Physics Institute of the Russian Academy of Sciences, Vavilov Str. 38, 119991 Moscow, Russia.
J Chem Phys. 2022 Apr 28;156(16):164702. doi: 10.1063/5.0089915.
Room temperature adsorption of molecular iodine on Ag(111) has been studied by scanning tunneling microscopy (STM), low energy electron diffraction, Auger electron spectroscopy with factor analysis, and density functional theory (DFT). At the chemisorption stage, iodine first forms a (3×3)R30° structure. Further iodine dosing leads to continuous commensurate-incommensurate phase transition, taking place via the formation of striped superheavy domain walls. As a result, the uniaxially compressed (13 ×3-R30°) phase is formed at an iodine coverage (θ) of 0.38 ML. At θ > 0.38 ML, first-order phase transition begins, leading to the formation of hexagonal moiré-like phases, which exhibit an anomalously large corrugation in STM (0.8-2.3 Å). In the range of 0.40-0.43 ML, the compression of hexagonal phases occurs, which ends at the formation of the (7 × 7)R21.8° structure at saturation. The DFT calculations allow us to explain the anomalous atomic corrugation of the hexagonal phases by the strong violation of the atomic structure of the substrate including up to ten layers of silver. Iodine dosing above 0.43 ML leads to the growth of 2D islands of silver iodide. The STM images of the silver iodide surface demonstrate a clear visible hexagonal superstructure with a periodicity of 25 Å superimposed with a quasi-hexagonal atomic modulation. DFT calculations of the atomic structure of AgI islands point to the formation of a sandwich-like double layer honeycomb structure similar to the case of I/Ag(100).
通过扫描隧道显微镜(STM)、低能电子衍射、因子分析俄歇电子能谱以及密度泛函理论(DFT)研究了分子碘在Ag(111)上的室温吸附。在化学吸附阶段,碘首先形成(3×3)R30°结构。进一步增加碘的剂量会导致连续的共格-非共格相变,这是通过形成条纹状超重畴壁发生的。结果,在碘覆盖度(θ)为0.38 ML时形成了单轴压缩的(13×3 - R30°)相。在θ > 0.38 ML时,一级相变开始,导致形成六边形莫尔条纹状相,其在STM中表现出异常大的起伏(0.8 - 2.3 Å)。在0.40 - 0.43 ML范围内,六边形相发生压缩,在饱和时形成(7×7)R21.8°结构时结束。DFT计算使我们能够通过包括多达十层银的衬底原子结构的强烈破坏来解释六边形相的异常原子起伏。碘剂量高于0.43 ML会导致碘化银二维岛的生长。碘化银表面的STM图像显示出清晰可见的六边形超结构,其周期为25 Å,叠加有准六边形原子调制。AgI岛原子结构的DFT计算表明形成了类似于I/Ag(100)情况的三明治状双层蜂窝结构。