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Recovery of nanomolecular electronic states from tunneling spectroscopy: LDOS of low-dimensional phthalocyanine molecular structures on Cu(111)

机译:从隧道光谱学中恢复纳米分子电子态:Cu(111)上的低维酞菁分子结构的LDOS

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摘要

Organic nanomolecules have become one of the most attractive materials for new nanoelectronics devices. Understanding of the electronic density of states around the Fermi energy of low-dimensional molecules is crucial in designing the electronic properties of molecular devices. The low dimensionality of nanomolecules results in new electronic properties owing to their unique symmetry. Scanning tunneling spectroscopy is one of the most effective techniques for studying the electronic states of nanomolecules, particularly near the Fermi energy (±1.5 eV), whereas these molecular electronic states are frequently buried by the tunneling probability background in tunneling spectroscopy, resulting in incorrect determination of the molecular electronic states. Here, we demonstrate how to recover nanomolecular electronic states from dI/dV curves obtained by tunneling spectroscopy. Precise local density of states (LDOS) peaks for low-dimensional nanostructures (monolayer ultrathin films, one-dimensional chains, and single molecules) of phthalocyanine (H_2Pc) molecules grown on noble fcc-Cu(111) were obtained.
机译:有机纳米分子已成为新型纳米电子器件最吸引人的材料之一。了解低维分子费米能量附近的态的电子密度对于设计分子器件的电子特性至关重要。纳米分子的低维因其独特的对称性而产生了新的电子特性。扫描隧道光谱法是研究纳米分子电子状态的最有效技术之一,尤其是在费米能量附近(±1.5 eV),而这些分子电子态经常被隧道光谱法中的隧道概率背景所掩盖,从而导致错误的确定分子电子态在这里,我们演示如何从隧道光谱学获得的dI / dV曲线中恢复纳米分子电子态。获得了在贵族fcc-Cu(111)上生长的酞菁(H_2Pc)分子的低维纳米结构(单层超薄膜,一维链和单分子)的精确状态密度(LDOS)峰。

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