首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Structural Evolution of Perfluoro-Pentacene Films on Ag(111): Transition from 2D to 3D Growth
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Structural Evolution of Perfluoro-Pentacene Films on Ag(111): Transition from 2D to 3D Growth

机译:Ag(111)上全氟并五苯薄膜的结构演变:从2D到3D生长的转变

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摘要

The structural evolution and thermal stability of perfluoro-pentacene (PF-PEN) thin films on Ag(111) have been studied by means of low-temperature scanning tunnelling microscopy (STM), low-energy electron diffraction (LEED), atomic force microscopy (AFM), X-ray photoelectron spectroscopy (XPS), and thermal desorption spectroscopy (TDS). Well-defined monolayer films can be prepared by utilizing the different adsorption energy of mono- and multilayer films and selectively desorbing multilayers upon careful heating at 380 K, whereas at temperatures above 400 K, a dissociation occurs. In the first monolayer, the molecules adopt a planar adsorption geometry and form a well-ordered commensurate (6 × 3) superstructure where molecules are uniformly oriented with their long axis along the ?110? azimuth. This molecular orientation is also maintained in the second layer, where molecules exhibit a staggered packing motif, whereas further deposition leads to the formation of isolated, tall islands. Moreover, on smooth silver surfaces with extended terraces, growth of PF-PEN onto beforehand prepared long-range ordered monolayer films at elevated temperature leads to needle-like islands that are uniformly aligned at substrate steps along ?110? azimuth directions.
机译:通过低温扫描隧道显微镜(STM),低能电子衍射(LEED),原子力显微镜研究了Ag(111)上全氟并五苯(PF-PEN)薄膜的结构演变和热稳定性。 (AFM),X射线光电子能谱(XPS)和热脱附能谱(TDS)。可以通过利用单层膜和多层膜的不同吸附能,并在380 K小心加热后选择性地解吸多层膜,来制备界限分明的单层膜,而在高于400 K的温度下,会发生解离。在第一个单层中,分子采用平面吸附几何形状,并形成秩序良好的相称(6×3)上层结构,其中分子以其长轴沿着?110?方向均匀取向。方位角。在第二层中也保持了这种分子取向,在第二层中,分子表现出交错的堆积图案,而进一步的沉积导致形成孤立的高岛。此外,在光滑的银表面上具有延伸的平台,在高温下将PF-PEN生长到预先准备的长程有序单层膜上会导致针状岛,在基体台阶上沿λ110均匀排列。方位角方向。

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