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Relating energy level alignment and amine-linked single molecule junction conductance

机译:与能级比对和胺连接的单分子结电导相关

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Using photoemission spectroscopy, we determine the relationship between electronic energy level alignment at a metal-molecule interface and single-molecule junction transport data. We measure the position of the highest occupied molecular orbital (HOMO) relative to the Au metal Fermi level for three 1,4-benzenediamine derivatives on Au(111) and Au(110) with ultraviolet and resonant X-ray photoemission spectroscopy. We compare these results to scanning tunnelling microscope-based break-junction measurements of single molecule conductance and to first-principles calculations. We find that the energy difference between the HOMO and Fermi level for the three molecules adsorbed on Au(111) correlate well with changes in conductance and agree well with quasiparticle energies computed from first-principles calculations incorporating self-energy corrections. On the Au(110) that presents Au atoms with lower-coordination, critical in break-junction conductance measurements, we see that the HOMO level shifts further from the Fermi level. These results provide the first direct comparison of spectroscopic energy level alignment measurements with single molecule junction transport data.
机译:使用光发射光谱法,我们确定金属-分子界面处的电子能级排列与单分子结传输数据之间的关系。我们用紫外和共振X射线光发射光谱法测量了Au(111)和Au(110)上的三个1,4-苯二胺衍生物的相对于金金属费米能级的最高占据分子轨道(HOMO)的位置。我们将这些结果与基于扫描隧道显微镜的单分子电导的断裂连接测量以及第一性原理计算进行比较。我们发现,吸附在Au(111)上的三个分子的HOMO和费米能级之间的能量差与电导的变化很好相关,并且与从结合自能校正的第一性原理计算得出的准粒子能量非常吻合。在呈现出较低配位的Au原子的Au(110)上,这在断开结电导测量中很关键,我们看到HOMO能级进一步偏离费米能级。这些结果首次将光谱能级比对测量与单分子结传输数据进行了直接比较。

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