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首页> 外文期刊>Chemistry: A European journal >Fine-Tuning of Single-Molecule Conductance by Tweaking Both Electronic Structure and Conformation of Side Substituents
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Fine-Tuning of Single-Molecule Conductance by Tweaking Both Electronic Structure and Conformation of Side Substituents

机译:通过调整电子结构和侧取代基的构型来微调单分子电导

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Herein, we describe a method to fine-tune the conductivity of single-molecule wires by employing a combination of chemical composition and geometrical modifications of multiple phenyl side groups as conductance modulators embedded along the main axis of the electronic pathway. We have measured the single-molecule conductivity of a novel series of phenyl-substituted carotenoid wires whose conductivity can be tuned with high precision over an order of magnitude range by modulating both the electron-donating character of the phenyl substituent and its dihedral angle. It is demonstrated that the electronic communication between the phenyl side groups and the molecular wire is maximized when the phenyl groups are twisted closer to the plane of the conjugated molecular wire. These findings can be refined to a general technique for precisely tuning the conductivity of molecular wires.
机译:在这里,我们描述了一种方法,该方法通过结合化学成分和多个苯基侧基的几何修饰作为沿电子路径主轴嵌入的电导调节剂,来微调单分子导线的电导率。我们已经测量了一系列新的苯基取代的类胡萝卜素线的单分子电导率,该电导率可以通过调节苯基取代基的给电子特性及其二面角来在一个数量级范围内高精度地调节。已经证明,当苯基被扭曲得更接近共轭分子线的平面时,苯基侧基和分子线之间的电子连通被最大化。这些发现可以完善为精确调整分子导线电导率的通用技术。

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