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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Temperature and length dependence of charge transport in redox-active molecular wires incorporating ruthenium(II) bis(sigma-arylacetylide) complexes
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Temperature and length dependence of charge transport in redox-active molecular wires incorporating ruthenium(II) bis(sigma-arylacetylide) complexes

机译:结合钌(II)双(σ-芳基乙炔)配合物的氧化还原活性分子线中电荷传输的温度和长度依赖性

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摘要

We report the electrical transport behavior of a series of redox-active conjugated molecular wires as a function of temperature and molecular length. The wires consist of covalently coupled ruthenium(II) bis(sigma-arylacetylide) complexes (Ru1-Ru3) and range in length from 2.4 to 4.9 nm. The molecules are unique in that they contain multiple metal-redox centers that are well-coupled by conjugated ligands. The molecules were self-assembled and their films were extensively characterized using ellipsometry, X-ray photoelectron spectroscopy, reflection-absorption infrared spectroscopy, and cyclic voltammetry. We probed their electrical properties using conducting probe atomic force microscopy and crossed-wire junctions. At room temperature, we found a very weak dependence of the wire resistance with molecular length, consistent with a high degree of electronic communication along the molecular backbone. In low-temperature (5 K) experiments, Coulomb blockade-like behavior was observed in junctions incorporating Ru3; direct tunneling appears to be the dominant transport mechanism in Ru1 and Ru2 junctions.
机译:我们报告了一系列的氧化还原活性共轭分子丝作为温度和分子长度的函数的电传输行为。导线由共价偶联的钌(II)双(σ-芳基乙炔)络合物(Ru1-Ru3)组成,长度范围为2.4至4.9 nm。这些分子的独特之处在于它们包含多个通过共轭配体良好耦合的金属氧化还原中心。分子是自组装的,并使用椭圆光度法,X射线光电子能谱,反射吸收红外光谱和循环伏安法对其膜进行了广泛表征。我们使用导电探针原子力显微镜和交叉导线结来探测它们的电性能。在室温下,我们发现导线电阻对分子长度的依赖性非常弱,这与沿分子主链的高度电子通讯相一致。在低温(5 K)实验中,在掺入Ru3的结中观察到库仑封锁样的行为。在Ru1和Ru2交界处,直接隧穿似乎是主要的运输机制。

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