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通过X射线对金表面功能化硫醇盐自组装单分子层进行化学操控。

Chemical manipulation by X-rays of functionalized thiolate self-assembled monolayers on Au.

作者信息

Iqbal P, Critchley K, Attwood D, Tunnicliffe D, Evans S D, Preece J A

机构信息

School of Chemistry, The University of Birmingham, Edgbaston, Birmingham B15 277T, UK.

出版信息

Langmuir. 2008 Dec 16;24(24):13969-76. doi: 10.1021/la802244a.

Abstract

The chemical modification caused by prolonged exposure to X-rays on a series of para-substituted phenyl moieties (-NO2, -CN, -CHO, -COOH, -CO2Me, and -CO2(1)Bu) at the surface of thiolate-Au self-assembled monolayers (SAMs) has been investigated by X-ray photoelectron spectroscopy (XPS). Furthermore, the influence that the phenyl group has on the chemical modification induced by the X-ray irradiation on the SAMs was investigated by comparing the XPS results obtained from irradiation on a NO2-aromatic-terminated SAM (6-(4-nitro-phenoxy)-hexane-1-thiolate (NPHT)) and NO2-aliphatic-terminated SAM (thioacetic acid S-(12-nitrododecyl) ester (TNDDE)). The NPHT and TNDDE SAMs have been shown to behave differently to X-ray exposure. The irradiation of the NPHT SAM led to the reduction of the nitro (-NO2) moiety to the amine (-NH2) moiety, as shown by the decrease in the intensity of the N 1s photoelectron peak for -NO2 (406 eV) in the XPS spectra with the concomitant increase in the N 1s photoelectron peak for -NH2 (399 eV). On the TNDDE SAM, XPS showed the -NO2 photoelectron peak again decreasing with prolonged X-ray irradiation whereas no peak was observed at 399 eV; therefore, the -NO2 moieties are selectively cleaved. No change was observed on the other functionalized monolayers apart from the -CO2(t)Bu-functionalized monolayer, where after 100 min of X-ray irradiation approximately 11% of the carbon content was lost. The S 2p and O 1s spectra remained unchanged during the irradiation suggesting the conversion of the -CO2(t)Bu to the -COOH moiety, although the conversion was not complete because the tertiary butyl moiety contributes 25% to the total carbon content of the SAM. Also, there was no evidence of the molecules desorbing from the substrate for any of the SAMs studied during the X-ray irradiation as shown by no change in the S 2p and C 1s XPS spectra taken during the X-ray irradiation.

摘要

通过X射线光电子能谱(XPS)研究了硫醇盐-金自组装单分子层(SAMs)表面一系列对位取代苯基部分(-NO2、-CN、-CHO、-COOH、-CO2Me和-CO2(1)Bu)长时间暴露于X射线下引起的化学修饰。此外,通过比较对硝基芳香族封端的SAM(6-(4-硝基苯氧基)-己烷-1-硫醇盐(NPHT))和硝基脂肪族封端的SAM(硫代乙酸S-(12-硝基十二烷基)酯(TNDDE))进行辐照得到的XPS结果,研究了苯基对SAMs上X射线辐照诱导的化学修饰的影响。已证明NPHT和TNDDE SAMs对X射线暴露的行为不同。NPHT SAM的辐照导致硝基(-NO2)部分还原为胺(-NH2)部分,如XPS光谱中-NO2(406 eV)的N 1s光电子峰强度降低,同时-NH2(399 eV)的N 1s光电子峰强度增加所示。在TNDDE SAM上,XPS显示随着X射线辐照时间延长,-NO2光电子峰再次降低,而在399 eV处未观察到峰;因此,-NO2部分被选择性裂解。除了-CO2(t)Bu功能化的单分子层外,在其他功能化单分子层上未观察到变化,在该单分子层上,X射线辐照100分钟后,约11%的碳含量损失。在辐照过程中,S 2p和O 1s光谱保持不变,表明-CO2(t)Bu转化为-COOH部分,尽管转化不完全,因为叔丁基部分占SAM总碳含量的25%。此外,如X射线辐照期间采集的S 2p和C 1s XPS光谱没有变化所示,在研究的任何SAMs的X射线辐照过程中,均没有证据表明分子从基底上解吸。

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