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Formation of highly ordered self-assembled monolayers of alkynes on Au(111) substrate

机译:在Au(111)基底上形成炔的高度有序的自组装单分子层

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摘要

Self-assembled monolayers (SAMs), prepared by reaction of terminal n-alkynes (HC≡C(CH2)nCH3, n = 5, 7, 9, and 11) with Au(111) at 60 °C were characterized using scanning tunneling microscopy (STM), infrared reflection absorption spectroscopy (IRRAS), X-ray photoelectron spectroscopy (XPS), and contact angles of water. In contrast to previous spectroscopic studies of this type of SAMs, these combined microscopic and spectroscopic experiments confirm formation of highly ordered SAMs having packing densities and molecular chain orientations very similar to those of alkanethiolates on Au(111). Physical properties, hydrophobicity, high surface order, and packing density, also suggest that SAMs of alkynes are similar to SAMs of alkanethiols. The formation of high-quality SAMs from alkynes requires careful preparation and manipulation of reactants in an oxygen-free environment; trace quantities of O2 lead to oxidized contaminants and disordered surface films. The oxidation process occurs during formation of the SAM by oxidation of the −C≡C– group (most likely catalyzed by the gold substrate in the presence of O2).
机译:在60°C下通过末端正炔(HC≡C(CH2)nCH3,n = 5、7、9和11)与Au(111)反应制备的自组装单分子层(SAMs)的特征在于扫描隧穿显微镜(STM),红外反射吸收光谱(IRRAS),X射线光电子能谱(XPS)和水的接触角。与这种类型的SAM的先前光谱学研究相比,这些组合的显微镜和光谱学实验证实形成了高度堆积的SAMs,其堆积密度和分子链取向与Au(111)上的链烷硫醇盐非常相似。物理性质,疏水性,高表面有序性和堆积密度也表明炔烃的SAM与烷硫醇的SAM相似。由炔烃形成高质量的SAM要求在无氧环境中精心制备和处理反应物。微量的O2会导致氧化污染物和无序的表面膜。氧化过程发生在SAM通过-C≡C-基团的氧化而发生(最有可能在存在O2的情况下由金底物催化)。

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