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分子束的单分子电导行为

Single-Molecule Conductance Behavior of Molecular Bundles.

作者信息

Bara-Estaún Alejandro, Planje Inco J, Almughathawi Renad, Naghibi Saman, Vezzoli Andrea, Milan David C, Lambert Colin, Martin Santiago, Cea Pilar, Nichols Richard J, Higgins Simon J, Yufit Dmitry S, Sangtarash Sara, Davidson Ross J, Beeby Andrew

机构信息

Department of Chemistry, Durham University, South Rd, Durham DH1 3LE, U.K.

Department of Chemistry, University of Liverpool, Crown St, Liverpool L69 7ZD, U.K.

出版信息

Inorg Chem. 2023 Dec 25;62(51):20940-20947. doi: 10.1021/acs.inorgchem.3c01943. Epub 2023 Dec 11.

Abstract

Controlling the orientation of complex molecules in molecular junctions is crucial to their development into functional devices. To date, this has been achieved through the use of multipodal compounds (i.e., containing more than two anchoring groups), resulting in the formation of tri/tetrapodal compounds. While such compounds have greatly improved orientation control, this comes at the cost of lower surface coverage. In this study, we examine an alternative approach for generating multimodal compounds by binding multiple independent molecular wires together through metal coordination to form a molecular bundle. This was achieved by coordinating iron(II) and cobalt(II) to 5,5'-bis(methylthio)-2,2'-bipyridine () and (methylenebis(4,1-phenylene))bis(1-(5-(methylthio)pyridin-2-yl)methanimine) () to give two monometallic complexes, and , and two bimetallic helicates, and . Using XPS, all of the complexes were shown to bind to a gold surface in a fashion through three thiomethyl groups. Using single-molecule conductance and DFT calculations, each of the ligands was shown to conduct as an independent wire with no impact from the rest of the complex. These results suggest that this is a useful approach for controlling the geometry of junction formation without altering the conductance behavior of the individual molecular wires.

摘要

控制分子结中复杂分子的取向对于将其开发成功能器件至关重要。迄今为止,这是通过使用多支化合物(即含有两个以上锚定基团)来实现的,从而形成三/四支化合物。虽然这类化合物极大地改善了取向控制,但代价是表面覆盖率较低。在本研究中,我们研究了一种通过金属配位将多条独立的分子线结合在一起形成分子束来生成多模态化合物的替代方法。这是通过将铁(II)和钴(II)与5,5'-双(甲硫基)-2,2'-联吡啶()和(亚甲基双(4,1-亚苯基))双(1-(5-(甲硫基)吡啶-2-基)甲亚胺)()配位,得到两个单金属配合物和,以及两个双金属螺旋体和来实现的。使用XPS表明,所有配合物都通过三个硫代甲基以一种方式结合到金表面。使用单分子电导和DFT计算表明,每个配体都作为独立的线传导,不受配合物其余部分的影响。这些结果表明,这是一种在不改变单个分子线电导行为的情况下控制结形成几何形状的有用方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9d75/10751792/7636bcdf69dd/ic3c01943_0006.jpg

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