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Energy alignment induced negative differential resistance: The role of hybrid states in aromatic molecular devices

机译:能量对准引起的负微分电阻:杂化态在芳香族分子装置中的作用

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Hybridization in aromatic molecules plays an important role in determining their electron transport properties. When an sp(2) bonded aromatic ring hybridizes with a carbon pair in either sp(3), sp(2), or sp form, only sp(2) and sp result in a delocalized state across the whole molecule, opening a channel for transport. At the same time negative differential resistance (NDR) is found only in the sp(2) and sp cases. An energy alignment scheme is adopted to elucidate the NDR process. This is constructed by comparing the positions of frontier molecular levels and the states of leads. It is revealed that the alignment between lead states located around the Fermi energy with the lowest unoccupied molecular orbital of the central molecule is the main cause of the NDR. (C) 2008 American Institute of Physics.
机译:芳族分子中的杂交在确定其电子传输性质中起重要作用。当sp(2)键合的芳环与sp(3),sp(2)或sp形式的碳对杂交时,只有sp(2)和sp会在整个分子上产生离域状态,从而打开通道运输。同时,仅在sp(2)和sp情况下才发现负差分电阻(NDR)。采用能量对准方案来阐明NDR过程。这是通过比较前沿分子水平的位置和铅的状态来构建的。揭示了位于费米能量周围的导联状态与中心分子的最低未占据分子轨道之间的对齐是造成NDR的主要原因。 (C)2008美国物理研究所。

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