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Polarized Infrared and Raman Spectra on Molecular Orientation of Phthalocyanine Derivatives in Nano-laminated Films

机译:纳米层压膜中酞菁衍生物分子取向的偏振红外和拉曼光谱

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The orientation of the hydrocarbon chains and functionally important chromophore of copper (II) phthalocyanine (CuPc) derivatives are discussed by spectrum assessment methods in ordered thin films. The attention is focused upon the monolayer and multilayer films of CuPc derivatives that are symmetrically and asymmetrically substituted CuPc biosimulation systems. On the basis of infrared (IR) transmission, polarized IR, reflection-absorption (RA) IR spectroscopy and surface enhancement resonance Raman spectra (SERRS) study, following conclusions are given. The hydrocarbon chains of CuPc in the film are in hexagonal or pseudohexagonal subcell packing, and the CH_2 asymmetric vibrational vector is oriented with respect to the substrate surface. The macrocycle of CuPc on the Ag substrate is oriented parallel to the surface, and the RA spectroscopy can distinguish the two CH_2 stretching modes of benzene cycle. All these studies and results are useful to provide an insight into the nanostructure of the thin films of other kinds of compounds.
机译:通过有序薄膜中的光谱评估方法讨论了烃链和功能重要的铜(II)酞菁(CUPC)衍生物的方向的取向。注意力集中在对称和不对称取代的Cupc生物仿制系统的CupC衍生物的单层和多层膜上。基于红外(IR)透射,偏振IR,反射吸收(RA)IR光谱和表面增强共振raman Spectra(Serrs)研究。薄膜中的Cupc的烃链处于六边形或伪胶质胶囊填料,并且CH_2不对称振动载体相对于基板表面取向。 Ag衬底上的Cupc的宏循环平行于表面定向,并且RA光谱可以区分苯循环的两个CH_2拉伸模式。所有这些研究和结果都有用于提供进入其他化合物的薄膜的纳米结构的洞察力。

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