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Highly Luminescent Monolayers Prepared by Molecular Layer Deposition

机译:通过分子层沉积制备的高发光单层

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摘要

A general avenue for the controlled preparation of conformal and highly luminescent monolayers of metal chelate complexes is presented, among them tris(8-hydroxyquinolinato)aluminium (Alq_3) and bis(8-hydroxyquinoline)zinc (Znq_2). Alq_3 is an extremely important model compound for organic electronic applications - it has been the electron transporter and luminescent material in the first efficient hetero-structure organic light emitting diode (OLED). The controlled formation of Alq_3 or Znq_2 monolayers is achieved by functionalization of the substrate with amino groups which serve as initial docking sites for trimethyl aluminum (TMA) or diethyl zinc (DEZ) molecules which datively bind to the amine. Subsequent exposure to 8-hydroxyquinoline (8-HQ) results in the self-limiting formation of highly luminescent monolayers on arbitrary surfaces, e.g. curved 3D objects or highly porous silica aerogels. The growth mechanism is studied by in-situ quartz crystal microbalance and ex-situ by highly sensitive (time-resolved) optical absorption/emission spectroscopy and photo-electron spectroscopy.
机译:提出了一种用于金属螯合物配合物和高发光单层受控制备的一般途径,其中包括三(8-羟基喹啉基)铝(Alq_3)和双(8-羟基喹啉)锌(Znq_2)。 Alq_3是有机电子应用中极其重要的模型化合物-它一直是第一个有效的异质结构有机发光二极管(OLED)中的电子传输和发光材料。 Alq_3或Znq_2单层的受控形成是通过将具有氨基的底物官能化来实现的,该底物用作三甲基铝(TMA)或二乙基锌(DEZ)分子的初始对接位点,该分子与胺基结合。随后暴露于8-羟基喹啉(8-HQ)导致在任意表面(例如表面)上自发光形成高度发光的单层。弯曲的3D对象或高度多孔的二氧化硅气凝胶。通过原位石英晶体微量天平研究生长机理,并通过高灵敏度(时间分辨)光吸收/发射光谱和光电子光谱在原位研究生长机理。

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    Department of Electrical Engineering, University of Wuppertal, 42119 Wuppertal, Germany;

    Department of Electrical Engineering, Technical University of Braunschweig, 38106 Braunschweig, Germany;

    Institute of Materials Science, Technische Universitaet Darmstadt, 64287 Darmstadt, Germany ,InnovationLab GmbH, 69115 Heidelberg, Germany;

    Department of Electrical Engineering, University of Wuppertal, 42119 Wuppertal, Germany;

    Department of Electrical Engineering, University of Wuppertal, 42119 Wuppertal, Germany;

    Department of Electrical Engineering, University of Wuppertal, 42119 Wuppertal, Germany;

    Department of Electrical Engineering, Technical University of Braunschweig, 38106 Braunschweig, Germany;

    Department of Electrical Engineering, Technical University of Braunschweig, 38106 Braunschweig, Germany;

    Department of Electrical Engineering, Technical University of Braunschweig, 38106 Braunschweig, Germany;

    Department of Electrical Engineering, Technical University of Braunschweig, 38106 Braunschweig, Germany ,InnovationLab GmbH, 69115 Heidelberg, Germany;

    Institute of Materials Science, Technische Universitaet Darmstadt, 64287 Darmstadt, Germany ,InnovationLab GmbH, 69115 Heidelberg, Germany;

    Institute of Materials Science, Technische Universitaet Darmstadt, 64287 Darmstadt, Germany ,InnovationLab GmbH, 69115 Heidelberg, Germany;

    Department of Electrical Engineering, University of Wuppertal, 42119 Wuppertal, Germany;

    Department of Electrical Engineering, University of Wuppertal, 42119 Wuppertal, Germany;

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