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Tracking molecular resonance forms of donor-acceptor push-pull molecules by single-molecule conductance experiments

机译:通过单分子电导实验跟踪供体-受体推挽分子的分子共振形式

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摘要

The ability of molecules to change colour on account of changes in solvent polarity is known as solvatochromism and used spectroscopically to characterize charge-transfer transitions in donor–acceptor molecules. Here we report that donor–acceptor-substituted molecular wires also exhibit distinct properties in single-molecule electronics under the influence of a bias voltage, but in absence of solvent. Two oligo(phenyleneethynylene) wires with donor–acceptor substitution on the central ring (cruciform-like) exhibit remarkably broad conductance peaks measured by the mechanically controlled break-junction technique with gold contacts, in contrast to the sharp peak of simpler molecules. From a theoretical analysis, we explain this by different degrees of charge delocalization and hence cross-conjugation at the central ring. Thus, small variations in the local environment promote the quinoid resonance form (off), the linearly conjugated (on) or any form in between. This shows how the conductance of donor–acceptor cruciforms is tuned by small changes in the environment.
机译:分子由于溶剂极性的变化而变色的能力称为溶剂致变色,并通过光谱法表征供体-受体分子中的电荷转移跃迁。在这里,我们报道了在偏置电压的影响下,但在没有溶剂的情况下,供体-受体取代的分子线在单分子电子学中也表现出独特的性能。中心环上有供体-受体取代的两条低聚(亚苯基乙炔基)电线(十字形)显示出非常宽的电导峰,该电导峰是通过机械控制的具有金触点的断开结技术测得的,与之相比,简单分子的尖峰却很明显。通过理论分析,我们通过不同程度的电荷离域和中心环的交叉共轭来解释这一点。因此,局部环境的微小变化会促进醌型共振形式(关闭),线性共轭(开启)或介于两者之间的任何形式。这说明了如何通过环境的微小变化来调节供体-受体十字形的电导率。

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