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Adsorption of a benzylic amide macrocycle on a solid substrate: XPS and HREELS characterization of thin films grown on Au(111)

机译:固体基质上苄基酰胺大环的吸附:在Au(111)上生长的薄膜的XPS和HREELS表征

摘要

Thin films of a benzylic amide macrocycle, the common component of a wide class of mechanically interlocked molecules, are prepared by vapor deposition on Au(111). The films are characterized by monochromated X-ray photoelectron spectroscopy (XPS) and high resolution electron energy loss spectroscopy (HREELS). The relative amounts of carbon, nitrogen, and oxygen are consistent with the formation of intact molecular species. At monolayer coverage, the relative intensity of out-of-plane to in-plane phenyl ring vibrational modes indicates that the macrocycle adopts a nearly flat-lying conformation. The formation of a chemisorption bond is evidenced by the presence of a Au-O stretching vibration and a low binding energy component in the O 1s core level region assigned to interfacial bonding. A decrease in film order and the absence of a preferred molecular orientation is observed at higher coverages. Computer modeling of the adsorption of the macrocycle on the surface rationalizes the experimental observations.
机译:通过气相沉积在Au(111)上制备苄基酰胺大环的薄膜(广泛的机械互锁分子的共同组成部分)。膜的特征在于单色X射线光电子能谱(XPS)和高分辨率电子能量损失能谱(HREELS)。碳,氮和氧的相对量与完整分子种类的形成一致。在单层覆盖下,平面外与平面内苯环振动模式的相对强度表明,大环化合物采用了几乎平坦的构象。化学吸附键的形成可通过分配给界面键合的O 1s核心能级区域中存在Au-O拉伸振动和低结合能成分来证明。在较高的覆盖率下观察到膜序的减少和不存在优选的分子取向。大环在表面上的吸附的计算机模型使实验观察合理化。

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