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带有多个硫醇衍生化刚性棒状连接基的卟啉自组装单分子层的表征

Characterization of self-assembled monolayers of porphyrins bearing multiple thiol-derivatized rigid-rod tethers.

作者信息

Yasseri Amir A, Syomin Dennis, Malinovskii Vladimir L, Loewe Robert S, Lindsey Jonathan S, Zaera Francisco, Bocian David F

机构信息

Department of Chemistry, University of California, Riverside, California 92521-0403, USA.

出版信息

J Am Chem Soc. 2004 Sep 29;126(38):11944-53. doi: 10.1021/ja047723t.

Abstract

A series of multithiol-functionalized zinc porphyrins has been prepared and characterized as self-assembled monolayers (SAMs) on Au. The molecules, designated ZnPS(n) (n = 1-4), contain from one to four [(S-acetylthio)methyl]phenylethynylphenyl groups appended to the meso-position of the porphyrin; the other meso-substituents are phenyl groups. For the dithiol-functionalized molecules, both the cis- and the trans-appended structures were examined. The ZnPS(n) SAMs were investigated using X-ray photoelectron spectroscopy, Fourier transform infrared spectroscopy, and various electrochemical methods. The studies reveal the following characteristics of the ZnPS(n) SAMs. (1) The ZnPS(n) molecules bind to the Au surface via a single thiol regardless of the number of thiol appendages that are available per molecular unit. (2) The porphyrins in the ZnPS(3) and ZnPS(4) SAMs bind to the surface in a more upright orientation than the porphyrins in the ZnPS(1), cis-ZnPS(2), and trans-ZnPS(2) SAMs. The porphyrins in the ZnPS(3) and ZnPS(4) SAMs are also more densely packed than those in the cis-ZnPS(2) and trans-ZnPS(2) SAMs. The packing density of the ZnPS(3) and ZnPS(4) SAMs is similar to that of the ZnPS(1) SAMs, despite the larger size of the molecules in the former SAMs. (3) The thermodynamics and kinetics of electron transfer are generally similar for all of the ZnPS(n) SAMs. The general similarities in the electron-transfer characteristics for all of the SAMs are attributed to the similar binding motif.

摘要

一系列多硫醇功能化的锌卟啉已被制备并表征为金表面的自组装单分子层(SAMs)。这些分子被命名为ZnPS(n)(n = 1 - 4),在卟啉的中位连接有一到四个[(S - 乙酰硫基)甲基]苯乙炔基苯基;其他中位取代基为苯基。对于二硫醇功能化的分子,研究了顺式和反式连接结构。使用X射线光电子能谱、傅里叶变换红外光谱和各种电化学方法对ZnPS(n) SAMs进行了研究。研究揭示了ZnPS(n) SAMs的以下特性。(1)无论每个分子单元可用的硫醇连接数是多少,ZnPS(n)分子都通过单个硫醇与金表面结合。(2)ZnPS(3)和ZnPS(4) SAMs中的卟啉比ZnPS(1)、顺式 - ZnPS(2)和反式 - ZnPS(2) SAMs中的卟啉以更直立的取向与表面结合。ZnPS(3)和ZnPS(4) SAMs中的卟啉也比顺式 - ZnPS(2)和反式 - ZnPS(2) SAMs中的卟啉堆积得更密集。尽管前一种SAMs中的分子尺寸较大,但ZnPS(3)和ZnPS(4) SAMs的堆积密度与ZnPS(1) SAMs的相似。(3)所有ZnPS(n) SAMs的电子转移热力学和动力学通常相似。所有SAMs电子转移特性的一般相似性归因于相似的结合模式。

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