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首页> 外文期刊>Journal of Electron Spectroscopy and Related Phenomena >The electronic structure and energy level alignment of porphyrin/metal interfaces studied by ultraviolet photoelectron spectroscopy
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The electronic structure and energy level alignment of porphyrin/metal interfaces studied by ultraviolet photoelectron spectroscopy

机译:紫外光电子能谱研究卟啉/金属界面的电子结构和能级配位

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摘要

Electronic structures of 5,10,15,20-zinctetraphenylporphyrin (ZnTPP)/metal (Au, Ag, Al, Mg) interfaces prepared in ultrahigh vacuum condition were investigated by ultraviolet photoelectron spectroscopy (UPS). We found that the electronic energy levels of ZnTPP align with the vacuum level of substrate metal with a constant energy shift of the vacuum levels across the interface. These findings cannot be explained by the concepts of Fermi level alignment nor vacuum level alignment. We also found that sample exposure to oxygen induces energy level shift in close relation with change of substrate work function at oxygen exposure. The relation between the observed electronic structure and the electric characteristics of porphyrin/metal interfaces in solar cell is also discussed.
机译:通过紫外光电子能谱(UPS)研究了在超高真空条件下制备的5,10,15,20-锌四苯基卟啉(ZnTPP)/金属(Au,Ag,Al,Mg)界面的电子结构。我们发现,ZnTPP的电子能级与基底金属的真空能级一致,并且整个界面上的真空能级具有恒定的能量位移。这些发现不能用费米能级对准或真空能级对准的概念来解释。我们还发现,样品在氧气中的暴露会引起能量水平的变化,而能量水平的变化与基材在氧气中的功函数的变化密切相关。还讨论了所观察到的电子结构与太阳能电池中卟啉/金属界面的电学特性之间的关系。

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