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首页> 外文期刊>Advanced Functional Materials >Electronic Structure of Self-Assembled Monolayers on Au(111) Surfaces: The Impact of Backbone Polarizability
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Electronic Structure of Self-Assembled Monolayers on Au(111) Surfaces: The Impact of Backbone Polarizability

机译:Au(111)表面上自组装单分子层的电子结构:骨干极化率的影响

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摘要

Modifying metal electrodes with self-assembled monolayers (SAMs) has promising applications in organic and molecular electronics. The two key electronic parameters are the modification of the electrode work function because of SAM adsorption and the alignment of the SAM conducting states relative to the metal Fermi level. Through a comprehensive density-functional-theory study on a series of organic thiols self-assembled on Au(111), relationships between the electronic structure of the individual molecules (especially the backbone polarizability and its response to donor/acceptor substitutions) and the properties of the corresponding SAMs are described. The molecular backbone is found to significantly impacts the level alignment; for molecules with small ionization potentials, even Fermi-levei pinning is observed. Nevertheless, independent of the backbone, polar head-group substitutions have no effect on the level alignment. For the work-function modification, the larger molecular dipole moments achieved when attaching donor/acceptor substituents to more polarizable backbones are largely compensated by increased depolarization in the SAMs. The main impact of the backbone on the work-function modification thus arises from its influence on the molecular orientation on the surface. This study provides a solid theoretical basis for the fundamental understanding of SAMs and significantly advances the understanding of structure-property relationships needed for the future development of functional organic interfaces.
机译:用自组装单分子膜(SAMs)修饰金属电极在有机和分子电子学中具有广阔的应用前景。这两个关键的电子参数是由于SAM吸附而导致的电极功函数的变化以及SAM导电状态相对于金属费米能级的对准。通过对在Au(111)上自组装的一系列有机硫醇的全面密度泛函理论研究,单个分子的电子结构(特别是主链极化性及其对供体/受体取代的响应)与性质之间的关系描述了相应的SAM。发现分子主链显着影响能级排列。对于具有较小电离势的分子,甚至可以观察到费米-列维固定。然而,独立于主链,极性头基取代对水平排列没有影响。对于功函数的修改,当将供体/受体取代基连接到更可极化的主链上时,更大的分子偶极矩可通过SAM中增加的去极化来很大程度上补偿。因此,主链对功函数修饰的主要影响来自其对表面分子取向的影响。这项研究为对SAM的基本理解提供了坚实的理论基础,并极大地促进了对功能性有机界面的未来发展所需的结构-性质关系的理解。

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  • 来源
    《Advanced Functional Materials》 |2009年第23期|3766-3775|共10页
  • 作者单位

    Key Laboratory of Organic Solids Beijing National Laboratory for Molecular Sciences (BNLMS), Institute of Chemistry Chinese Academy of Sciences 100190 Beijing (P.R. China);

    Institute of Solid State Physics Graz University of Technology Petersgasse 16, A-8010 Graz (Austria);

    Institute of Solid State Physics Graz University of Technology Petersgasse 16, A-8010 Graz (Austria) Department of Material Physics University of Leoben Franz-Josef Str. 18/11, A-8700 Leoben (Austria);

    Insitut fuer Physik Humboldt-Universitaet zu Berlin Newtonstr. 15, 12489 Berlin (Germany);

    Fakultaet fuer Physik and Center for Computational Materials Science Universitaet Wien Sensengasse, 1090 Wien (Austria);

    Key Laboratory of Organic Solids Beijing National Laboratory for Molecular Sciences (BNLMS), Institute of Chemistry Chinese Academy of Sciences 100190 Beijing (P.R. China);

    Key Laboratory of Organic Solids Beijing National Laboratory for Molecular Sciences (BNLMS), Institute of Chemistry Chinese Academy of Sciences 100190 Beijing (P.R. China);

    Key Laboratory of Organic Solids Beijing National Laboratory for Molecular Sciences (BNLMS), Institute of Chemistry Chinese Academy of Sciences 100190 Beijing (P.R. China) Department of Chemistry Tsinghua University 100084 Beijing (P.R. China);

    Institute of Solid State Physics Graz University of Technology Petersgasse 16, A-8010 Graz (Austria);

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