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Assessment of Scanning Tunneling Spectroscopy Modes Inspecting Electron Confinement in Surface-Confined Supramolecular Networks

机译:在表面受限超分子网络中检查电子约束的扫描隧道光谱模式的评估

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摘要

Scanning tunneling spectroscopy (STS) enables the local, energy-resolved investigation of a samples surface density of states (DOS) by measuring the differential conductance (dI/dV) being approximately proportional to the DOS. It is popular to examine the electronic structure of elementary samples by acquiring dI/dV maps under constant current conditions. Here we demonstrate the intricacy of STS mapping of samples exhibiting a strong corrugation originating from electronic density and local work function changes. The confinement of the Ag(111) surface state by a porous organic network is studied with maps obtained under constant-current (CC) as well as open-feedback-loop (OFL) conditions. We show how the CC maps deviate markedly from the physically more meaningful OFL maps. By applying a renormalization procedure to the OFL data we can mimic the spurious effects of the CC mode and thereby rationalize the physical effects evoking the artefacts in the CC maps.
机译:扫描隧道光谱法(STS)通过测量与DOS成正比的微分电导(dI / dV),可以对样品的表面态密度(DOS)进行局部能量分辨研究。通过在恒定电流条件下获取dI / dV图来检查基本样品的电子结构是很普遍的。在这里,我们展示了样品的STS映射的复杂性,这些样品表现出源自电子密度和局部功函数变化的强烈波纹。利用在恒定电流(CC)和开环反馈(OFL)条件下获得的图研究了多孔有机网络对Ag(111)表面状态的限制。我们展示了CC贴图与实际更有意义的OFL贴图之间的显着偏离。通过对OFL数据应用重归一化过程,我们可以模拟CC模式的虚假效果,从而合理化引起CC图中伪像的物理效果。

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