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首页> 外文期刊>Computational Materials Science >Structural, electronic and transport properties of a single 1,4-benzenediamine molecule attached to metal contacts of Au, Ag and Cu
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Structural, electronic and transport properties of a single 1,4-benzenediamine molecule attached to metal contacts of Au, Ag and Cu

机译:用Au,Ag和Cu的金属触点附着单个1,4-苯并二胺分子的结构,电子和运输性能

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We investigated molecular junctions formed by a single 1,4-benzenediamine molecule bridging between Au, Ag or Cu electrodes. We show that the molecule interacts stronger with Cu than both Ag and Au, which is in good agreement with the atomic overlap population analysis. The DFT-computed transmission characteristics of junctions described are dominated by tunnelling effects through the highest-occupied molecular orbital (HOMO). Our results also reveal that junctions formed with Au electrodes are more conductive than those formed with Ag and Cu electrodes, consistent with the lower work functions for Ag and Cu. By analyzing the calculated I x V curves for the Au, Ag, Cu/BDAH(4)/Cu, Ag, Au junctions we verify an ohmic behavior. In addition, a weak rectifying performance is verified, for all junctions. Our results thus reinforce the fact that the nature of the metal-molecule interaction and the choice of the electrode materials are important factors for modulating the transport properties of single-molecule junctions.
机译:我们研究了通过在Au,Ag或Cu电极之间的单一1,4-苯并二胺分子桥包形成的分子交叉。我们表明该分子与Cu相互作用,而不是AG和Au,与原子重叠人口分析很好。所描述的结的DFT计算的传输特性通过最高占用的分子轨道(HOMO)来隧道效应来支配。我们的研究结果还揭示了用Au电极形成的结比用Ag和Cu电极形成的连接,与Ag和Cu的较低工作功能一致。通过分析Au,Ag,Cu / Bdah(4)/ Cu,Ag,Au结的计算的I x V曲线,我们验证了欧姆的行为。此外,对于所有连接点,还验证了弱化性能。因此,我们的结果加强了金属分子相互作用的性质和电极材料的选择是调节单分子结的运输性能的重要因素。

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