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Epitaxial thin film structures of elecroluminescent materials

机译:场致发光材料的外延薄膜结构

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Despite the fast-aced new developments and improvments of applications incorporating conjugated organic materials, rather little effort is made to obtain well-defined structures and thin films of these in order to exploit the highly anisotropic properties (e.g. conductivity, polarized light emission) of most conjugated organic materials. It has been shown that oligomers, which can easily be evaporated under ultrahigh vacuum conditions, exhibit heteroepitaxial growth on various substrates. Depending on the nature of the interaction of the organic molecules with the substrate different orientations can be obtained, as well as by simply changing the conditions of evaporation. Therefore, by going from amorphous or polycrystalline structures to highly textured or single crystalline ones new insights into the physcial properties of the materials c an be expected, and also new applications. We studied the formation of well-defined films of the electroluminescent oligomer p-sexiphenyl on various metal and semiconductor surfaces and determined the orientation of the molecules by means of low energy electron diffraction (LEED), infrared reflection absorption spectroscopy (IR-RAS) and atomic force microscopy (AFM). Depending on the substrate material we found that the molecules are oriented either parallel or perpendicular to the substrate surface. In addition to that, highly oriented 6P films were doped with potassium, and the change in the molecular vibrational signature was investigated with IR-RAS.
机译:尽管结合了共轭有机材料的应用取得了快速发展和进步,但为了获得大多数材料的高度各向异性(例如,电导率,偏振光发射),却很少做出努力来获得结构明确的结构和薄膜。共轭有机材料。已经表明,可以在超高真空条件下容易蒸发的低聚物在各种基材上表现出异质外延生长。取决于有机分子与基板的相互作用的性质,以及通过简单地改变蒸发条件,可以获得不同的取向。因此,通过从无定形或多晶结构变为高度织构化或单晶结构,人们有望获得对材料物理特性的新见解,并有望获得新的应用。我们研究了在各种金属和半导体表面上形成的电致发光低聚物对-sexiphenyl的清晰的膜,并通过低能电子衍射(LEED),红外反射吸收光谱(IR-RAS)和原子力显微镜(AFM)。根据基质材料的不同,我们发现分子的取向与基质表面平行或垂直。除此之外,在高取向的6P薄膜中掺入钾,并用IR-RAS研究了分子振动信号的变化。

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