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Synthesis and Single-Molecule Conductance Study of Redox-Active Ruthenium Complexes with Pyridyl and Dihydrobenzob thiophene Anchoring Groups

机译:吡啶基和二氢苯并吡酰基晶晶络合物的合成与单分子测导研究B噻吩锚定基团

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摘要

The ancillary ligands 4′-(4-pyridyl)-2,2′:6′,2′′-terpyridine and 4′-(2,3-dihydrobenzo[b]thiophene)-2,2′-6′,2“-terpyridine were used to synthesize two series of mono- and dinuclear ruthenium complexes differing in their lengths and anchoring groups. The electrochemical and single-molecular conductance properties of these two series of ruthenium complexes were studied experimentally by means of cyclic voltammetry and the scanning tunneling microscopy-break junction technique (STM-BJ) and theoretically by means of density functional theory (DFT). Cyclic voltammetry data showed clear redox peaks corresponding to both the metal- and ligand-related redox reactions. Single-molecular conductance demonstrated an exponential decay of the molecular conductance with the increase in molecular length for both the series of ruthenium complexes, with decay constants of βPY=2.07±0.1 nm−1 and βBT=2.16±0.1 nm−1, respectively. The contact resistance of complexes with 2,3-dihydrobenzo[b]thiophene (BT) anchoring groups is found to be smaller than the contact resistance of ruthenium complexes with pyridine (PY) anchors. DFT calculations support the experimental results and provided additional information on the electronic structure and charge transport properties in those metal|ruthenium complex|metal junctions.
机译:辅助配体4' - (4-吡啶基)-2,2':6',2' - Terpyridine和4' - (2,3-二氢苯并[b]噻吩)-2,2'-6',2 “ - 在其长度和锚固基团中合成两系列单核和甲甲钌配合物的吡啶。通过循环伏安法实验研究这两种钌配合物的电化学和单分子传导性能,并通过密度函数理论(DFT)理论上是扫描隧道显微镜断裂结技术(STM-BJ)。循环伏安数据显示透明氧化还原峰对应于金属和配体相关的氧化还原反应。单分子导率分别表明分子导量的指数衰减,随着钌配合物系列的分子长度的增加,βpy= 2.07±0.1nm-1和βBT= 2.16±0.1nm-1的衰减常数。发现配合物的接触电阻与2,3-二氢苯肼[B]噻吩(BT)锚定基团小于钌配合物的丙啶(PY)锚的接触电阻。 DFT计算支持实验结果,并提供有关这些金属连接物的电子结构和电荷传输性能的附加信息。

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