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并苯类分子导线中分子电导的非指数长度依赖性

Nonexponential Length Dependence of Molecular Conductance in Acene-Based Molecular Wires.

作者信息

Valdiviezo Jesús, Rocha Paulina, Polakovsky Anastazia, Palma Julio L

机构信息

Department of Chemistry, Duke University, Durham, North Carolina 27708, United States.

School of Engineering and Sciences, Tecnologico de Monterrey, Monterrey, Nuevo Leon 64849, Mexico.

出版信息

ACS Sens. 2021 Feb 26;6(2):477-484. doi: 10.1021/acssensors.0c02049. Epub 2021 Jan 7.

Abstract

In the nonresonant regime, molecular conductance decays exponentially with distance, limiting the fabrication of efficient molecular semiconductors at the nanoscale. In this work, we calculate the conductance of a series of acene derivatives connected to gold electrodes using density functional theory (DFT) combined with the nonequilibrium Green's function (NEGF) formalism. We show that these systems have near length-independent conductance and can exhibit a conductance increase with molecular length depending on the connection to the electrodes. The analysis of the molecular orbital energies and transmission functions attribute this behavior to the dramatic decrease of the highest occupied molecular orbital-lowest unoccupied molecular orbital (HOMO-LUMO) gap with length, which shifts the transmission peaks near the Fermi level. These results demonstrate that the anchoring configuration determines the conductance behavior of acene derivatives, which are optimal building blocks to fabricate single-molecule devices with tunable charge transport properties.

摘要

在非共振状态下,分子电导随距离呈指数衰减,这限制了纳米级高效分子半导体的制造。在这项工作中,我们使用密度泛函理论(DFT)结合非平衡格林函数(NEGF)形式,计算了一系列连接到金电极的并苯衍生物的电导。我们表明,这些系统具有近乎与长度无关的电导,并且根据与电极的连接方式,其电导可能会随着分子长度的增加而增大。对分子轨道能量和传输函数的分析将这种行为归因于最高占据分子轨道 - 最低未占据分子轨道(HOMO - LUMO)能隙随长度的急剧减小,这使得传输峰向费米能级附近移动。这些结果表明,锚定构型决定了并苯衍生物的电导行为,而并苯衍生物是制造具有可调电荷传输特性的单分子器件的理想构建块。

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