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Characterization of Self-Assembled Monolayers on aRuthenium Surface

机译:自组装单层膜的表征钌表面

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摘要

We have modified and stabilized the ruthenium surface by depositing a self-assembled monolayer (SAM) of 1-hexadecanethiol on a polycrystalline ruthenium thin film. The growth mechanism, dynamics, and stability of these monolayers were studied. SAMs, deposited under ambient conditions, on piranha-cleaned and piranha + H2SO4 cleaned substrates were compared to monolayers formed on H-radical-cleaned Ru surfaces. We found that alkanethiols on H-radical-cleaned Ru formed densely packed monolayers that remained stable when kept in a nitrogen atmosphere. X-ray photoelectron spectroscopy (XPS) shows a distinct sulfur peak (BE = 162.3 eV), corresponding to metal–sulfur bonding. When exposed to ambient conditions, the SAM decayed over a period of hours.
机译:我们通过在多晶钌薄膜上沉积1-十六烷硫醇的自组装单分子层(SAM)来修饰和稳定钌表面。研究了这些单分子膜的生长机理,动力学和稳定性。将在环境条件下沉积在食人鱼清洁和食人鱼+ H2SO4清洁的基材上的SAM与在H自由基清洁的Ru表面上形成的单层进行比较。我们发现,H自由基清洗的Ru上的链烷硫醇形成了紧密堆积的单层,当保持在氮气氛中时,单层保持稳定。 X射线光电子能谱(XPS)显示出一个明显的硫峰(BE = 162.3 eV),对应于金属-硫键。当暴露于环境条件下时,SAM会在数小时内衰减。

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