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具有不对称接触的分子结的电子和输运性质。

Electronic and transport properties of a molecular junction with asymmetric contacts.

机构信息

Department of Physics, National Sun Yat-Sen University, Kaohsiung, Taiwan.

出版信息

Nanotechnology. 2010 Feb 10;21(6):065203. doi: 10.1088/0957-4484/21/6/065203. Epub 2010 Jan 8.

Abstract

Asymmetric molecular junctions have been shown experimentally to exhibit a dual-conductance transport property with a pulse-like current-voltage characteristic, by Reed and co-workers. Using a recently developed first-principles integrated piecewise thermal equilibrium current calculation method and a gold-benzene-1-olate-4-thiolate-gold model molecular junction, this unusual transport property has been reproduced. Analysis of the electrostatics and the electronic structure reveals that the high-current state results from subtle bias induced charge transfer at the electrode-molecule contacts that raises molecular orbital energies and enhances the current-contributing molecular density of states and the probabilities of resonance tunneling of conduction electrons from one electrode to another.

摘要

里德等人的实验表明,不对称分子结具有双电导输运特性,表现出类脉冲的电流-电压特性。本研究采用最近发展的第一性原理分段热平衡电流计算方法和金-苯-1-醇酸-4-硫醇-金模型分子结,重现了这一异常输运特性。静电和电子结构分析表明,高电流状态源于电极-分子接触处细微偏压诱导的电荷转移,这提高了分子轨道能量,并增强了电流贡献分子态密度和传导电子从一个电极到另一个电极共振隧穿的概率。

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