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An investigation of naphthalenediimides as central building blocks in model compounds for scanning tunneling microscope induced light emission experiments and förster resonance energy transfer studies

机译:萘二酰亚胺作为扫描隧道模型化合物中心构件的研究

摘要

AbstractudScanning tunnelling microscopy (STM) is a powerful technique to observe surfaces at the atomic level. The resolution of this STM technique is good enough to study the electronic properties of single molecules adsorbed onto metallic substrates. An important step towards controllable single molecular technologies is the determination of how the molecule substrate interaction changes the local molecular electronic structure. Since this electronic structure of molecules is strongly perturbed by the electrons of the underlying metallic substrate, an electronic decoupling of the molecules from the metal surface is required to isolate the electronic properties of an individual molecule.udFörster resonance energy transfer (FRET) has found many applications in different fields of science, because it allows the determination of the distance between two chromophores in the 1 10 nm range. In addition to other factors, this energy transfer is also dependent on the relative orientation of donor and acceptor chromophores to each other.udThis thesis describes the design, synthesis and investigations of model compounds for:ud1). STM induced light emission experiments from single molecules andud2). for FRET studies.ud
机译:摘要 ud扫描隧道显微镜(STM)是一种在原子级观察表面的强大技术。此STM技术的分辨率足以研究吸附在金属基质上的单分子的电子性质。迈向可控单分子技术的重要一步是确定分子底物相互作用如何改变局部分子电子结构。由于分子的这种电子结构会受到下层金属基质的电子的强烈干扰,因此需要将分子与金属表面进行电子去耦以隔离单个分子的电子性质。udFörster共振能量转移(FRET)已发现因为它可以确定1 10 nm范围内的两个生色团之间的距离,所以在不同的科学领域都有许多应用。除其他因素外,这种能量转移还取决于供体和受体生色团彼此的相对取向。 ud本文描述了以下化合物的设计,合成和研究: STM从单分子和 ud2诱导发光实验。用于FRET研究。 ud

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  • 作者

    Gabutti Sandro;

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  • 年度 2010
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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