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并五苯薄膜在Cu110上的外延生长。

Epitaxial growth of pentacene films on Cu110.

作者信息

Söhnchen S, Lukas S, Witte G

机构信息

Lehrstuhl für Physikalische Chemie I, Ruhr-Universität Bochum, 44780 Bochum, Germany.

出版信息

J Chem Phys. 2004 Jul 1;121(1):525-34. doi: 10.1063/1.1760076.

Abstract

The molecular structure of thin pentacene (C(22)H(14)) films grown on a Cu(110) surface has been studied by means of He atom scattering, low energy electron diffraction, thermal desorption spectroscopy, x-ray photoelectron spectroscopy, and x-ray absorption spectroscopy. Depending on the actual film thickness three different crystalline phases have been identified which reveal a characteristic reorientation of the molecular plane relative to the substrate surface. In the monolayer regime the molecules form a highly ordered commensurate (6.5x2) structure with a planar adsorption geometry. For thin multilayers (thickness <2 nm) a second phase is observed which is characterized by a lateral ((-0.65 5.69) ( 1.90 1.37)) structure and a tilting of the molecular plane of about 28 degrees around their long axis which remains parallel to the surface. Finally, when exceeding a thickness of about 2 nm subsequent growth proceeds with an upright molecular orientation and leads to the formation of crystalline films which are epitaxially oriented with respect to the substrate. The present study thus demonstrates that also on metal substrates highly ordered pentacene films with an upright orientation of the molecular planes can be grown. Photoelectron spectroscopy data indicate further that thick films do not grow in a layer-by-layer mode but reveal a significant degree of roughness.

摘要

通过氦原子散射、低能电子衍射、热脱附光谱、X射线光电子能谱和X射线吸收光谱等手段,对生长在Cu(110)表面的并五苯(C₂₂H₁₄)薄膜的分子结构进行了研究。根据实际薄膜厚度,已识别出三种不同的晶相,它们显示出分子平面相对于衬底表面的特征性重新取向。在单层状态下,分子形成具有平面吸附几何结构的高度有序的(6.5×2)结构。对于薄多层膜(厚度<2nm),观察到第二相,其特征在于横向((-0.65 5.69)(1.90 1.37))结构以及分子平面围绕其与表面保持平行的长轴倾斜约28度。最后,当超过约2nm的厚度时,后续生长以直立的分子取向进行,并导致形成相对于衬底外延取向的结晶薄膜。因此,本研究表明,即使在金属衬底上,也可以生长分子平面具有直立取向的高度有序的并五苯薄膜。光电子能谱数据进一步表明,厚膜不是以逐层模式生长,而是显示出显著的粗糙度。

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