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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Sulfur Atoms as Tethers for Selective Attachment of Aromatic Molecules to Silicon(001) Surfaces
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Sulfur Atoms as Tethers for Selective Attachment of Aromatic Molecules to Silicon(001) Surfaces

机译:硫原子作为用于芳香分子选择性附着到Silicon(001)表面的系链

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摘要

Benzenethiol (C_6H_5SH) and diphenyl disulfide (C_6H_5S-SC_6H_5) were used as model systems to compare the interaction of chemically similar π-conjugated molecules with the Si(001)-2 * 1 surface. The bonding behavior of these substituted aromatic hydrocarbons on the Si(001) surface was investigated using Fourier transform infrared spectroscopy (FTIR), X-ray photoelectron spectroscopy (XPS), and scanning tunneling microscopy (STM). Both FTIR and XPS indicate that benzenethiol molecules chemisorb on the Si(001) surface predominantly through the sulfur atom via deprotonation of the thiol substituent group. There also is evidence that a small minority of benzenethiol molecules may adsorb on the surface through the phenyl ring or undergo further fragmentation. Diphenyl disulfide appears to bond to the Si(001) surface in one primary configuration in which the S-S bond of diphenyl disulfide is cleaved and the two sulfur-phenyl moieties are bonded to the silicon surface through the sulfur atoms. Thermal studies indicate that the sulfur-tethered aromatic rings of benzenethiol and diphenyl disulfide are stable to temperatures above 520 K. Furthermore, STM studies show that these molecules chemisorb to the silicon surface within a single dimer row and, in the case of diphenyl disulfide, appear to form ordered rows of sulfur-tethered aromatic rings. This new chemistry demonstrates remarkable potential as a means of selectively attaching π-conjugated systems to technologically useful semiconductor surfaces.
机译:使用苯硫酚(C_6H_5SH)和二苯二硫(C_6H_5S-SC_6H_5)作为模型系统,比较化学相似的π共轭分子与Si(001)-2 * 1表面的相互作用。使用傅立叶变换红外光谱(FTIR),X射线光电子能谱(XPS)和扫描隧道显微镜(STM)研究了这些取代的芳烃在Si(001)表面上的键合行为。 FTIR和XPS均表明苯硫醇分子主要通过硫原子通过硫醇取代基的去质子化作用在Si(001)表面化学吸附。也有证据表明,少数苯硫酚分子可能通过苯环吸附在表面上或发生进一步的断裂。二苯二硫似乎以一种主要构型键合到Si(001)表面,其中二苯二硫的S-S键断裂,两个硫-苯基部分通过硫原子键合到硅表面。热学研究表明,苯硫醇和二苯二硫的硫系芳香环在高于520 K的温度下是稳定的。此外,STM研究表明,这些分子在单个二聚体行中化学吸附到硅表面,而在二苯二硫的情况下,似乎会形成有序的硫束缚芳香环行。这种新化学方法显示出巨大的潜力,可以选择性地将π共轭体系连接到技术上有用的半导体表面。

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