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首页> 外文期刊>Applied Surface Science >Investigation of secondary cluster ion emission from self-assembled monolayers of alkanethiols on gold with ToF-SIMS
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Investigation of secondary cluster ion emission from self-assembled monolayers of alkanethiols on gold with ToF-SIMS

机译:用ToF-SIMS研究链烷硫醇自组装单分子在金上的次级簇离子发射

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Self-assembled monolayers (SAMs) of alkanethiols on gold are ideal model systems for studying the emission processes of secondary ions from thin organic layers on metal substrates under keV ion bombardment. In this experimental study, we focus on the emission processes of gold-hexadecanethiolate cluster ions, which are not well understood yet. For this purpose, we carried out time-of-flight secondary ion mass spectrometry (ToF-SIMS) measurements on SAMs of hexadecanethiols (HDT, CH_3-(CH_2)_(15)-SH) on gold substrates. The gold-hexadecanethiolate cluster ions Au_xM_y~- show intense peaks in mass spectra of negatively charged secondary ions under 10 keV Ar~+ bombardment. Around the corresponding peaks, a characteristic peak pattern of additional ions is observed. We analyzed the contribution of different cluster ions formed by an attachment or a loss of several hydrogen atoms and their isotope patterns to the individual peaks of the peak pattern. We found two different types of gold-hexadecanethiolate cluster ions. The first type has only one parent ion with no hydrogen atom attached. The second type has two parent ions, one without attachment of hydrogen atoms and another with one additional hydrogen atom. Moreover, we found a universally valid sum formula, which predicts the most intense peak in the peak pattern of all gold-hexadecanethiolate cluster ions analyzed.
机译:金上链烷硫醇的自组装单分子层(SAMs)是理想的模型系统,用于研究在keV离子轰击下金属基底上有机薄层上的次级离子的发射过程。在本实验研究中,我们集中于十六烷硫醇金簇离子的发射过程,目前尚不清楚。为此,我们在金基底上对十六烷硫醇(HDT,CH_3-(CH_2)_(15)-SH)的SAM进行了飞行时间二次离子质谱(ToF-SIMS)测量。十六烷硫醇金簇离子Au_xM_y〜-在10 keV Ar〜+轰击下在带负电的二次离子的质谱图中显示出很强的峰。在相应的峰周围,观察到其他离子的特征峰模式。我们分析了由多个氢原子的附着或损失形成的不同簇离子的贡献及其同位素模式对峰模式的各个峰的影响。我们发现了两种不同类型的十六烷硫醇金簇离子。第一类仅具有一个未连接氢原子的母体离子。第二种具有两个母离子,一个不带氢原子,另一个带一个氢原子。此外,我们发现了一个通用的求和公式,该公式可预测所有分析的十六烷硫醇金簇离子的峰型中最强烈的峰。

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