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首页> 外文期刊>Current applied physics: the official journal of the Korean Physical Society >A comparative study of electron transport in benzene molecule covalently bonded to gold and silicon electrodes for pioneering the electron transport properties of silicon quantum dot-molecule hybrid polymers
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A comparative study of electron transport in benzene molecule covalently bonded to gold and silicon electrodes for pioneering the electron transport properties of silicon quantum dot-molecule hybrid polymers

机译:共价键合到金和硅电极上的苯分子中电子传输的比较研究,以开拓硅量子点分子杂化聚合物的电子传输性能

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摘要

In order to pioneer the electron transport properties of silicon (Si) quantum dot-molecule hybrid polymers, we investigate the electron transport properties of the benzene molecule in silicon (Si) semiconductor electrodes, based on nonequilibrium Green's function (NEGF) method coupled with density functional theory (DFT), in comparison with conventional gold (Au) metal electrodes, with three different anchoring linker groups: thiol for dithiol-benzene (DTB), methylene for dimethyl-benzene (DMB), and direct bonding for benzene (Ph). It is interestingly found that, due to band gap nature of the Si semiconductor electrodes, the molecular junctions with the Si electrodes show no current up to the bias voltage of around 0.8 V. In addition, the DTB molecular junctions in the Si semiconductor electrodes connected with Si-S bond show higher conducting properties than other DMB and Ph molecular junctions directly coupled to the electrodes with the Si-C bonds (DMB < Ph < DTB). The electron transport properties of the molecules in the two different electrodes are analyzed on the basis of the understanding transmission spectra, projected density of states (PDOS), and molecular orbitals. We believe that the use of thiol linker may open new possibility in the molecular electronics with the Si semiconductor electrodes and the Si QD-molecule hybrid polymers concept. (C) 2015 Elsevier B.V. All rights reserved.
机译:为了开创硅(Si)量子点-分子杂化聚合物的电子传输性能,我们基于非平衡格林函数(NEGF)方法结合密度,研究了硅(Si)半导体电极中苯分子的电子传输性能。功能理论(DFT),与常规的金(Au)金属电极相比,具有三个不同的锚定连接基:二硫醇-苯(DTB)的硫醇,二甲基苯(DMB)的亚甲基和苯的直接键合(Ph) 。有趣地发现,由于Si半导体电极的带隙性质,与Si电极的分子结在直至约0.8V的偏置电压下均不显示电流。此外,Si半导体电极中的DTB分子结被连接。具有Si-S键的分子显示出比其他DMB和通过Si-C键直接耦合到电极的Ph分子结更高的导电性能(DMB

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