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Side‐Group‐Mediated Mechanical Conductance Switching in Molecular Junctions

机译:侧群介导的分子连接中的机械电导切换

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摘要

A key target in molecular electronics has been molecules having switchable electrical properties. Switching between two electrical states has been demonstrated using such stimuli as light, electrochemical voltage, complexation and mechanical modulation. A classic example of the latter is the switching of 4,4'-bipyridine, leading to conductance modulation of ~1 order of magnitude. Here, we describe the use of side-group chemistry to control the properties of a single-molecule electromechanical switch, which can be cycled between two conductance states by repeated compression and elongation. While bulky alkyl substituents inhibit the switching behaviour, -conjugated side-groups reinstate it. DFT calculations show that weak interactions between aryl moieties and the metallic electrodes are responsible for the observed phenomenon. This represents a significant expansion of the single-molecule electronics "tool-box" for the design of junctions with electromechanical properties.
机译:分子电子器件的关键目标是具有可切换电性能的分子。已经使用这种刺激作为光,电化学电压,梳理和机械调制来证明两种电气状态之间的切换。后者的经典示例是4,4'-Bi0 yridine的切换,导致测量〜1级的测量。这里,我们描述了使用侧组化学来控制单分子机电开关的性质,其可以通过重复的压缩和伸长率在两个电导状态之间循环。虽然庞大的烷基取代基抑制切换行为,但缀合的副组恢复。 DFT计算表明芳基部分与金属电极之间的弱相互作用对观察到的现象负责。这代表了单分子电子“工具箱”的显着扩展,用于设计具有机电性能的结。

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