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Rapid reduction of self-assembled monolayers of a disulfide terminated para-nitrophenyl alkyl ester on roughened Au surfaces during XPS measurements

机译:在XPS测量过程中快速还原粗糙的Au表面上二硫封端的对硝基苯基烷基酯的自组装单分子膜

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摘要

The application of multiple spectroscopic techniques to the characterisation of self-assembled monolayers (SAMs) is essential for determining whether the desired surface functionalization was achieved, the molecules are integer after self-assembly and well-packed on the substrate. We investigated the use of surface enhanced Raman spectroscopy and X-ray photoelectron spectroscopy to characterise SAMs of a disulfide-functionalised nitrobenzene (i.e. 4-nitrophenyl-5-(1,2-dithiolan-3-yl)pentanoate). We show that electron-induced damage during acquisition of photoemission spectra of the monolayer occurs through reduction of the nitro group. Use of roughened bulk gold substrates to enhance the SERS sensitivity results in an increase in the rate at which the reduction proceeds.
机译:多种光谱技术在自组装单分子膜(SAMs)表征中的应用对于确定是否实现了所需的表面功能化至关重要,分子在自组装后是整数,并很好地堆积在基板上。我们研究了使用表面增强拉曼光谱和X射线光电子能谱表征二硫化物官能化的硝基苯(即4-硝基苯基-5-(1,2-二硫代木-3-基)戊酸)的SAM。我们表明,在获取单层光发射光谱过程中,电子诱导的损伤是通过硝基的还原而发生的。使用粗糙的散装金基底来增强SERS灵敏度会导致还原速率增加。

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