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Conductance Switching in Expanded Porphyrins through Aromaticity and Topology Changes

机译:通过芳香性和拓扑变化在膨胀的卟啉中进行电导转换

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摘要

Expanded porphyrins are flexible enough to switch between different π-conjugation topologies, namely Möbius, Hückel and twisted-Hückel, each with distinct electronic properties and aromaticity. Since these switches can be induced by different external stimuli, expanded porphyrins represent a promising platform to develop a novel type of molecular switch for molecular electronic devices. In this work, the feasibility of conductance switches based on topology and/or aromaticity changes in expanded porphyrins is assessed for the first time. In particular, the electron transport properties of penta-, hexa- and heptaphyrins with different π-conjugation topologies and aromaticity were carefully investigated using the nonequilibrium Green’s function formalism in combination with density functional theory for various configurations of the gold contacts. Our results highlight the importance of the macrocyclic aromaticity and connectivity and, to a lesser extent, the molecular topology, in determining the transmission functions and local currents. When the electrodes are connected along the longitudinal axis of the macrocycle, we found that aromaticity of Hückel expanded porphyrins increases single-molecule junction conductance, contrary to the negative relationship between conductance and aromaticity found in single five-membered rings. For this particular connectivity, antiaromatic Hückel structures with [4 n ] π-electrons exhibit a sharp reduction in transmission near the Fermi level due to destructive quantum interference between the HOMO and LUMO. Belt-shaped Möbius aromatic structures exhibit a lower conductance as compared to the Hückel aromatic structures, and the current flow avoids the molecular twist. Importantly, we show that expanded porphyrins, upon redox and topology interconversions, could act as efficient three-level molecular switches with high ON/OFF ratio, up to 10~(3) at low bias voltage.
机译:扩展的卟啉具有足够的灵活性,可以在不同的π共轭拓扑结构之间切换,即Möbius,Hückel和Twisted-Hückel,每种拓扑结构都具有不同的电子特性和芳香性。由于这些开关可以由不同的外部刺激诱导,因此扩展的卟啉代表了开发用于分子电子设备的新型分子开关的有前途的平台。在这项工作中,首次评估了基于扩展的卟啉中的拓扑和/或芳香性变化的电导开关的可行性。特别是,使用非平衡格林函数形式和密度泛函理论结合金触点的各种构型,仔细研究了具有不同π共轭拓扑结构和芳香性的五,六和七卟啉的电子传输性质。我们的结果突出了大环芳族化合物和连接性的重要性,以及在较小程度上确定分子传递拓扑和局部电流的分子拓扑的重要性。当电极沿大环的纵轴连接时,我们发现Hückel扩展的卟啉的芳香性增加了单分子结的电导率,这与在单五元环中发现的电导率和芳香性之间的负关系相反。对于这种特殊的连通性,由于HOMO和LUMO之间的破坏性量子干涉,具有[4 n]π电子的抗芳香族Hückel结构在费米能级附近的透射率急剧降低。与Hückel芳族结构相比,带状莫比乌斯(Möbius)芳族结构的电导率较低,并且电流避免了分子扭曲。重要的是,我们表明,在氧化还原和拓扑结构互转换时,扩展的卟啉可以作为有效的三级分子开关,具有高开/关比,在低偏置电压下可达10〜(3)。

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  • 来源
    《Journal of the American Chemical Society》 |2018年第4期|1313-1326|共14页
  • 作者单位

    Department of General Chemistry (ALGC), Vrije Universiteit Brussel (VUB), Pleinlaan 2, 1050 Brussels, Belgium;

    Kavli Institute of Nanoscience, Delft University of Technology, Lorentzweg 1, 2628 CJ Delft, The Netherlands,Swiss Federal Laboratories for Materials Science and Technology, Überlandstrasse 129, 8600 Dübendorf, Switzerland;

    Department of General Chemistry (ALGC), Vrije Universiteit Brussel (VUB), Pleinlaan 2, 1050 Brussels, Belgium;

    Department of General Chemistry (ALGC), Vrije Universiteit Brussel (VUB), Pleinlaan 2, 1050 Brussels, Belgium;

    Department of General Chemistry (ALGC), Vrije Universiteit Brussel (VUB), Pleinlaan 2, 1050 Brussels, Belgium;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:07:17

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