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Formation of an interphase layer during deposition of cobalt onto tetraphenylporphyrin: a hard X-ray photoelectron spectroscopy (HAXPES) study

机译:钴沉积到四苯基卟啉上期间形成相间层的研究:硬X射线光电子能谱(HAXPES)研究

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The interface formation upon vapor deposition of a metal onto a molecular organic semiconductor was studied using a well-defined complexation reaction between a metal and a porphyrin. Specifically, metallic cobalt (Co) was vapor deposited onto a thin film of 2H-tetraphenylporphyrin (2HTPP) at room temperature. The resulting interface was probed with Hard X-ray Photoelectron Spectroscopy (HAXPES) using photon energies between 2 and 6 keV to obtain a detailed depth profile of the chemical composition. Characteristic changes in the N 1s core level signals reveal the formation of a cobalt tetraphenylporphyrin (CoTPP) layer between the Co and 2HTPP layers. Assuming an abrupt interface between CoTPP and 2HTPP (layer-by-layer model), analysis of the XPS data results in a thickness of the CoTPP reaction layer of 1.6 nm. However, a more advanced numerical analysis allowed us to reconstruct details of the actual depth distribution of the CoTPP interphase layer: up to a depth of 1.5 nm, all 2HTPP molecules were converted into CoTPP. Beyond this depth, the CoTPP concentration decreases sharply within 0.15 nm to zero.
机译:使用金属和卟啉之间明确定义的络合反应,研究了将金属气相沉积到分子有机半导体上时形成的界面。具体而言,在室温下将金属钴(Co)气相沉积到2H-四苯基卟啉(2HTPP)的薄膜上。使用2到6 keV之间的光子能量,用硬X射线光电子能谱(HAXPES)探测所得的界面,以获得化学成分的详细深度分布。 N 1s核心能级信号的特征变化揭示了在Co和2HTPP层之间形成了四苯基卟啉钴(CoTPP)层。假设CoTPP和2HTPP(逐层模型)之间存在突然的界面,对XPS数据的分析将得出CoTPP反应层的厚度为1.6 nm。但是,更高级的数值分析使我们能够重建CoTPP相间层实际深度分布的详细信息:直到1.5 nm的深度,所有2HTPP分子均被转化为CoTPP。超过此深度,CoTPP浓度在0.15 nm范围内急剧下降至零。

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