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二元芳香族自组装单分子层:静电性质及跨分子框架的电荷隧穿速率

Binary aromatic self-assembled monolayers: electrostatic properties and charge tunneling rates across the molecular framework.

作者信息

Asyuda Andika, Wan Xianglong, Zharnikov Michael

机构信息

Angewandte Physikalische Chemie, Universität Heidelberg, Im Neuenheimer Feld 253, D-69120 Heidelberg, Germany.

出版信息

Phys Chem Chem Phys. 2020 May 21;22(19):10957-10967. doi: 10.1039/d0cp01740j. Epub 2020 May 11.

DOI:10.1039/d0cp01740j
PMID:32391839
Abstract

A series of single-component and binary SAMs composed of non-substituted (H-BPT) and fluorine-substituted (F-BPT) mercaptobiphenyls on Au(111) was studied in the context of their structure, composition, electrostatic properties, and charge tunneling rates in molecular junctions. All SAMs were found to be well-defined and densely packed, with all molecules bound to the substrate by the thiolate anchor and orientated upright with respect to the substrate. The relative composition of the binary SAMs turned out to be close to the relative contents of both molecules in the solutions from which these SAMs were formed. The work function of the binary SAMs can be varied in a gradual and controlled fashion between the ultimate values for the single-component films, viz.∼4.3 eV and ∼5.2 eV. The extent of the electrostatic effects in photoemission is small, affecting predominantly the apparent binding energy of the terminal fluorine atoms, which is explained by the strong spatial confinement of the step in the electrostatic potential at the SAM-ambient interface. The charge tunneling rate across the molecular framework is noticeably (by about an order of magnitude) higher for the H-BPT SAM than for the F-BPT monolayer, in good agreement with the literature data. The tunneling rates for the mixed SAM are intermediate to those of the single-component films, varying in a gradual fashion with the SAM composition between the respective ultimate values.

摘要

研究了由未取代的(H-BPT)和氟取代的(F-BPT)巯基联苯在Au(111)上组成的一系列单组分和二元自组装单分子膜(SAMs),涉及它们的结构、组成、静电性质以及分子结中的电荷隧穿速率。发现所有的自组装单分子膜都定义明确且紧密堆积,所有分子都通过硫醇盐锚定与基底结合,并相对于基底垂直取向。二元自组装单分子膜的相对组成结果接近形成这些自组装单分子膜的溶液中两种分子的相对含量。二元自组装单分子膜的功函数可以在单组分膜的极限值之间以渐进且可控的方式变化,即约4.3 eV和约5.2 eV。光发射中静电效应的程度较小,主要影响末端氟原子的表观结合能,这是由自组装单分子膜与环境界面处静电势台阶的强空间限制所解释的。与文献数据一致,H-BPT自组装单分子膜的分子框架上的电荷隧穿速率明显(约一个数量级)高于F-BPT单分子层。混合自组装单分子膜的隧穿速率介于单组分膜之间,并随着自组装单分子膜组成在各自极限值之间逐渐变化。

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