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Role of redox centre in charge transport investigated by novel self-assembled conjugated polymer molecular junctions

机译:通过新型自组装共轭聚合物分子结研究氧化还原中心在电荷传输中的作用

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摘要

Molecular electronics describes a field that seeks to implement electronic components made of molecular building blocks. To date, few studies have used conjugated polymers in molecular junctions despite the fact that they potentially transport charge more efficiently than the extensively investigated small-molecular systems. Here we report a novel type of molecular tunnelling junction exploring the use of conjugated polymers, which are self-assembled into ultrathin films in a distinguishable 'planar' manner from the traditional vertically oriented small-molecule monolayers. Electrical measurements on the junctions reveal molecular-specific characteristics of the polymeric molecules in comparison with less conjugated small molecules. More significantly, we decorate redox-active functionality into polymeric backbones, demonstrating a key role of redox centre in the modulation of charge transport behaviour via energy level engineering and external stimuli, and implying the potential of employing tailor-made polymeric components as alternatives to small molecules for future molecular-scale electronics.
机译:分子电子学描述了一个试图实现由分子构件组成的电子组件的领域。迄今为止,很少有研究在分子连接中使用共轭聚合物,尽管事实是,它们可能比经过广泛研究的小分子系统更有效地传输电荷。在这里,我们报告了一种新型的分子隧道结,探讨了共轭聚合物的使用,该共轭聚合物以与传统的垂直取向小分子单分子层不同的“平面”方式自组装成超薄膜。与较少共轭的小分子相比,对结的电学测量揭示了聚合物分子的分子特异性特征。更重要的是,我们将氧化还原活性功能修饰到聚合物主链中,证​​明了氧化还原中心在通过能级工程和外部刺激调节电荷传输行为中的关键作用,并暗示了使用量身定制的聚合物组分替代小分子的潜力。用于未来分子规模电子学的分子。

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