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The Role of Through-Space Interactions in Modulating Constructive and Destructive Interference Effects in Benzene

机译:通过空间相互作用在苯中调节建设性和破坏性干扰作用的作用

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Quantum interference effects, whether constructive or destructive, are key to predicting and understanding the electrical conductance of single molecules. Here, through theory and experiment, we investigate a family of benzene-like molecules that exhibit both constructive and destructive interference effects arising due to more than one contact between the molecule and each electrode. In particular, we demonstrate that the pi-system of meta-coupled benzene can exhibit constructive interference and its para-coupled analog can exhibit destructive interference, and vice versa, depending on the specific through-space interactions. As a peculiarity, this allows a meta-coupled benzene molecule to exhibit higher conductance than a para-coupled benzene. Our results provide design principles for molecular electronic components with high sensitivity to through-space interactions and demonstrate that increasing the number of contacts between the molecule and electrodes can both increase and decrease the conductance.
机译:量子干扰效应,无论是建设性还是破坏性,都是预测和理解单分子电导的关键。在这里,通过理论和实验,我们研究了由于分子和每个电极之间的多于一种接触而产生的苯样的苯样分子。特别地,我们证明了元偶联的苯的PI-System可以表现出建设性干扰,并且其对耦合的模拟可以表现出破坏性干扰,反之亦然,反之亦然。作为特殊性,这允许元偶联的苯分子表现出比对偶联的苯的更高的电导率。我们的结果提供了对通过空间相互作用具有高灵敏度的分子电子元件的设计原理,并证明了分子和电极之间的触点数量可以增加和降低电导。

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