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Passivant dependence of nanoparticle-substrate interactions of alkanethiolate-passivated Au nanoparticles on graphite substrates

机译:烷硫醇盐钝化的金纳米粒子在石墨基底上的纳米粒子-基底相互作用的钝化依赖性

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摘要

We have carried out the photoemission study of monodisperse Au nanoparticles passivated with the various alkanethiolate on the highly oriented pyrolytic graphite (HOPG) substrate. The photoemission spectra in the vicinity of the Fermi level of alkanethiolate-passivated Au nanoparticles on the HOPG substrates are not the metallic Fermi edge. The steep slopes of Fermi level onsets move away from the Fermi level and depend on the surface-passivant molecules. We have analyzed the obtained spectra with the dynamic final state effect model that takes into account the Coulomb interaction between the photoelectron and photohole with a finite lifetime during the photoemission process. The calculated results based on the dynamic final state effect model reproduce the experimental ones fairly well. Furthermore, it is found that the photohole lifetime depends on the molecular length of surface-passivant. We attribute the passivant dependence of photoemission spectra to the surface-passivant dependent nanoparticle-substrate interaction.
机译:我们已经进行了在高取向热解石墨(HOPG)基底上被各种链烷硫醇盐钝化的单分散金纳米颗粒的光发射研究。 HOPG基材上的链烷硫醇钝化金纳米颗粒的费米能级附近的光发射光谱不是金属费米边缘。费米能级起始的陡峭斜率远离费米能级,并取决于表面钝化分子。我们使用动态最终状态效应模型分析了获得的光谱,该模型考虑了在光发射过程中光电子和光孔之间的库伦相互作用以及有限的寿命。基于动态最终状态效应模型的计算结果很好地再现了实验结果。此外,发现光孔寿命取决于表面钝化剂的分子长度。我们将光发射光谱的钝化相关性归因于表面钝化相关的纳米粒子-基质相互作用。

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