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芳香族和反芳香族单分子电路的电子输运特性起源

Origin of the Electron Transport Properties of Aromatic and Antiaromatic Single Molecule Circuits.

作者信息

Arasu Narendra P, Vázquez Héctor

机构信息

Institute of Physics Academy of Sciences of the Czech Republic, Cukrovarnická 10, 16200, Prague, Czech Republic.

Department of Condensed Matter Physics, Faculty of Mathematics and Physics, Charles University, Ke Karlovu 5, 12000, Prague, Czech Republic.

出版信息

Chemphyschem. 2021 May 5;22(9):864-869. doi: 10.1002/cphc.202100010. Epub 2021 Apr 7.

DOI:10.1002/cphc.202100010
PMID:33656792
Abstract

Antiaromatic molecules have been predicted to exhibit increased electron transport properties when placed between two nanoelectrodes compared to their aromatic analogues. While some studies have demonstrated this relationship, others have found no substantial increase. We use atomistic simulations to establish a general relationship between the electronic spectra of aromatic, antiaromatic, and quinoidal molecules and illustrate its implications for electron transport. We compare the electronic properties of a series of aromatic-antiaromatic counterparts and show that antiaromaticity effectively p-dopes the aromatic electronic spectra. As a consequence, the conducting properties of aromatic-antiaromatic analogues are closely related. For similar attachment points to the electrodes, an interference feature is expected in the HOMO-LUMO gap of one whenever it is absent in the other one. We demonstrate how the relative conductance of aromatic-antiaromatic pairs can be tuned and even reversed through the choice of chemical linker groups. Our work provides a general picture relating connectivity, (anti)aromaticity, and quantum interference and establishes new design rules for single molecule circuits.

摘要

与芳香族类似物相比,反芳香族分子在置于两个纳米电极之间时,预计会表现出增强的电子传输特性。虽然一些研究已经证明了这种关系,但其他研究并未发现显著增加。我们使用原子模拟来建立芳香族、反芳香族和醌型分子的电子光谱之间的一般关系,并说明其对电子传输的影响。我们比较了一系列芳香 - 反芳香族对应物的电子性质,表明反芳香性有效地对芳香族电子光谱进行了p型掺杂。因此,芳香 - 反芳香族类似物的导电性质密切相关。对于与电极的类似连接点,当其中一个的HOMO - LUMO能隙中不存在干涉特征时,预计在另一个的HOMO - LUMO能隙中会出现干涉特征。我们展示了如何通过选择化学连接基团来调节甚至反转芳香 - 反芳香族对的相对电导率。我们的工作提供了一幅将连通性、(反)芳香性和量子干涉联系起来的总体图景,并为单分子电路建立了新的设计规则。

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