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Thiolate Chemistry: A Powerful and Versatile Synthetic Tool for Immobilization/Functionalization of Oligothiophenes on a Gold Surface

机译:硫醇盐化学:一种强大而通用的合成工具,用于金表面上的低聚噻吩的固定化/功能化

摘要

The synthesis and characterization of a series of quaterthiophenes (4Ts) with thiolate groups protected with 2-cyanoethyl (CNE), 2-trimethylsilylethyl (TMSE), and acetyl (Ac) groups are described. Sequential cleavage of these different protecting groups allows for the preparation of 4Ts derivatized with ferrocene and/or alkanethiol chains. The electrochemical behavior of these compounds has been analyzed in solution by cyclic voltammetry (CV). A ferrocene-derivatized dithiol 4T 14 and a dithiol 4T 15 with two TMSE-protected thiolate groups have been immobilized on a gold surface as monolayers that have been characterized by CV, ellipsometry, contact-angle measurement, and X-ray photoelectron spectroscopy (XPS). The results show that molecules 14 and 15 are doubly grafted with a horizontal orientation of the conjugated system relative to the surface. Furthermore, application of the deprotection/alkylation sequence of the remaining protected thiolate groups on a monolayer of 15 allows for efficient post-functionalization.
机译:描述了一系列具有2-氰基乙基(CNE),2-三甲基甲硅烷基乙基(TMSE)和乙酰基(Ac)保护的硫醇盐基的四噻吩(4T)的合成和表征。这些不同的保护基的顺序切割允许制备用二茂铁和/或烷硫醇链衍生的4T。这些化合物的电化学行为已通过循环伏安法(CV)在溶液中进行了分析。二茂铁衍生的二硫醇4T 14和具有两个TMSE保护的硫醇盐基团的二硫醇4T 15已固定在金表面作为单层,已通过CV,椭圆光度法,接触角测量和X射线光电子能谱(XPS)进行了表征)。结果表明,分子14和15以共轭体系相对于表面的水平方向进行了双重接枝。此外,在15的单层上施加剩余的保护的硫醇盐基团的脱保护/烷基化序列允许有效的后官能化。

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