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Fingerprints of Through-Bond and Through-Space Exciton and Charge π-Electron Delocalization in Linearly Extended [2.2]Paracydophanes

机译:线性扩展[2.2] Paracydophanes中的穿透键和穿透空间激子和电荷π电子离域的指纹

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摘要

New stilbenoid and thiophenic compounds terminally functionalized with donor-donor, acceptor-acceptor, or donor-acceptor moieties and possessing a central [2.2]paracyclophane unit have been prepared, and their properties interpreted in terms of through-bond and through space π-electron delocalization (i.e., π-conjugations). Based on photophysical data, their excited-state properties have been described with a focus on the participation of the central [2.2]paracyclophane in competition with through-bond conjugation in the side arms. To this end, two-photon and one-photon absorption and emission spectroscopy, as a function of temperature, solvent polarity, and pressure in the solid state have been recorded. Furthermore, charge delocalization through the [2.2]paracyclophane in the neutral state and in the oxidized species (radical cations, dications and radical trications) has been investigated, allowing the elucidation of the vibrational Raman fingerprint of through-space charge delocalization. Thus, a complementary approach to both "intermolecular" excitation and charge delocalizations in [2.2]paracyclophane molecules is shown which can serve as models of charge and exciton migration in organic semiconductors.
机译:制备了具有供体-供体,受体-或供体-受体部分末端官能化并具有中心[2.2]对环苯并环单元的新的类苯二酚和噻吩化合物,并通过键合和贯穿空间的π电子解释了它们的性质。离域化(即π共轭)。基于光物理数据,已描述了它们的激发态特性,重点是中央[2.2]对环环烷与侧臂中的键合共轭竞争。为此,已经记录了作为固态温度,溶剂极性和压力的函数的二光子和一光子吸收和发射光谱。此外,已经研究了通过[2.2]对环环烷在中性态和氧化物种(自由基阳离子,阳离子和自由基)中的电荷离域,从而阐明了空间电荷离域的振动拉曼指纹。因此,显示了对[2.2]对环环烷分子中的“分子间”激发和电荷离域的互补方法,其可以用作有机半导体中电荷和激子迁移的模型。

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  • 来源
    《Journal of the American Chemical Society》 |2017年第8期|3095-3105|共11页
  • 作者单位

    Department of Physical Chemistry, University of Malaga, Campus de Teatinos s, Malaga 29071, Spain;

    IMDEA-Nanociencia, C/Faraday 9, Ciudad Universitaria de Cantoblanco, 28049 Madrid, Spain,Department of Organic Chemistry, Faculty of Chemistry;

    Department of Physical Chemistry, University of Malaga, Campus de Teatinos s, Malaga 29071, Spain;

    Department of Physical Chemistry, Chemistry Faculty, University Complutense of Madrid, 28040 Madrid, Spain;

    Advanced Materials Engineering and Modelling Group, Faculty of Chemistry, Wroclaw University of Science and Technology, 50370 Wroclaw, Poland;

    Advanced Materials Engineering and Modelling Group, Faculty of Chemistry, Wroclaw University of Science and Technology, 50370 Wroclaw, Poland;

    Department of Physical Chemistry, University of Malaga, Campus de Teatinos s, Malaga 29071, Spain;

    Division of Science and Mathematics, University of Minnesota, Morris, Minnesota 56267, United States;

    Division of Science and Mathematics, University of Minnesota, Morris, Minnesota 56267, United States;

    Division of Science and Mathematics, University of Minnesota, Morris, Minnesota 56267, United States;

    Department of Chemistry, University of Texas at El Paso, El Paso, Texas 79968, United States;

    Department of Physical Chemistry, University of Malaga, Campus de Teatinos s, Malaga 29071, Spain;

    IMDEA-Nanociencia, C/Faraday 9, Ciudad Universitaria de Cantoblanco, 28049 Madrid, Spain,Department of Organic Chemistry, Faculty of Chemistry;

    Department of Physical Chemistry, University of Malaga, Campus de Teatinos s, Malaga 29071, Spain;

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