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Effect of Metal Complexation on the Conductance of Single-Molecular Wires Measured at Room Temperature

机译:金属络合对室温下单分子导线电导的影响

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摘要

The present work aims to give insight into the effect that metal coordination has on the room-temperature conductance of molecular wires. For that purpose, we have designed a family of rigid, highly conductive ligands functionalized with different terminations (acetylthiols, pyridines, and ethynyl groups), in which the conformational changes induced by metal coordination are negligible. The single-molecule conductance features of this series of molecular wires and their corresponding Cu(I) complexes have been measured in break-junction setups at room temperature. Experimental and theoretical data show that no matter the anchoring group, in all cases metal coordination leads to a shift toward lower energies of the ligand energy levels and a reduction of the HOMO-LUMO gap. However, electron-transport measurements carried out at room temperature revealed a variable metal coordination effect depending on the anchoring group: upon metal coordination, the molecular conductance of thiol and ethynyl derivatives decreased, whereas that of pyridine derivatives increased. These differences reside on the molecular levels implied in the conduction. According to quantum-mechanical calculations based on density functional theory methods, the ligand frontier orbital lying closer to the Fermi energy of the leads differs depending on the anchoring group. Thereby, the effect of metal coordination on molecular conductance observed for each anchoring could be explained in terms of the different energy alignments of the molecular orbitals within the gold Fermi level.
机译:本工作旨在深入了解金属配位对分子线的室温电导的影响。为此,我们设计了一系列刚性,高导电性的配体,这些配体用不同的末端(乙酰硫醇,吡啶和乙炔基)官能化,其中由金属配位引起的构象变化可忽略不计。该系列分子线及其相应的Cu(I)络合物的单分子电导特性已在室温下的断开结装置中进行了测量。实验和理论数据表明,无论锚定基团如何,在所有情况下,金属配位都会导致配体能级朝较低能方向移动,并且HOMO-LUMO间隙减小。然而,在室温下进行的电子传输测量显示出取决于锚固基团的可变的金属配位效应:在金属配位时,硫醇和乙炔基衍生物的分子电导降低,而吡啶衍生物的分子电导增加。这些差异存在于传导中暗示的分子水平上。根据基于密度泛函理论方法的量子力学计算,更接近导线费米能量的配体前沿轨道因锚定基团的不同而不同。因此,可以根据金费米能级内分子轨道的不同能量排列来解释金属配位对每个锚定所观察到的分子电导的影响。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2014年第23期|8314-8322|共9页
  • 作者单位

    Instituto de Ciencia Molecular (ICMol), Universidad de Valencia, Catedratico Jose Beltran 2, 46980 Paterna, Spain;

    Kavli Institute of Nanoscience, Delft University of Technology, Lorentzweg 1, 2628 CJ Delft, The Netherlands;

    Instituto de Ciencia Molecular (ICMol), Universidad de Valencia, Catedratico Jose Beltran 2, 46980 Paterna, Spain;

    Kavli Institute of Nanoscience, Delft University of Technology, Lorentzweg 1, 2628 CJ Delft, The Netherlands;

    Centro de Reconocimiento Molecular y Desarrollo Tecnologico (IDM), Unidad mixta Universidad Politecnica de Valencia-Universidad de Valencia, Dr. Moliner 50, 46100 Burjassot, Spain;

    Departament de Quimica Inorganica and Institut de Recerca de Quimica Teorica i Computacional, Universitat de Barcelona, Diagonal 645, 08028 Barcelona, Spain;

    Departament de Quimica Inorganica and Institut de Recerca de Quimica Teorica i Computacional, Universitat de Barcelona, Diagonal 645, 08028 Barcelona, Spain;

    Kavli Institute of Nanoscience, Delft University of Technology, Lorentzweg 1, 2628 CJ Delft, The Netherlands;

    Instituto de Ciencia Molecular (ICMol), Universidad de Valencia, Catedratico Jose Beltran 2, 46980 Paterna, Spain;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:11:03

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