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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Elecrtrochemical characterization of self-assembled thiol-porphyrin monolayers on gold electrodes by SECM
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Elecrtrochemical characterization of self-assembled thiol-porphyrin monolayers on gold electrodes by SECM

机译:SECM对金电极上自组装硫醇-卟啉单分子层的电化学表征

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摘要

Herein, the scanning electrochemical microscopy (SECM) approach is applied to study the formation of thiol-porphyrin self-assembled monolayer (SAMs). Using cyclic voltammetry (CV), the formation process is characterized adopting different probe molecules. The observed phenomena indicate that the formation process is affected by solution properties and the molecular structure of the probe molecules. In K3Fe(CN)(6), the SAMs show a strong electron-transfer (ET) blocking effect on a pure porphyrin-modified electrode. However, addition of metal ions to the porphyrin molecules leads to ET. A consistent tendency is observed through-out the modification process using CV and SECM methods. Furthermore, k(eff) values, the apparent heterogeneous rate constants, obtained for different modification periods affirm the validity of these results. SECM images are used to collect surface information in the course of the modification process when the substrate potential is 0.5 V versus Ag/AgCl. The effect of the substrate potential indicates that the oxidation of the porphyrin molecules is supported by more positive potentials because of the similar bimolecular reaction of the porphyrin ring with positive charge and the probe molecules with negative charge.
机译:本文中,采用扫描电化学显微镜(SECM)方法研究硫醇-卟啉自组装单分子膜(SAMs)的形成。使用循环伏安法(CV),采用不同的探针分子来表征形成过程。观察到的现象表明形成过程受溶液性质和探针分子的分子结构影响。在K3Fe(CN)(6)中,SAM对纯卟啉修饰的电极表现出很强的电子转移(ET)阻断作用。但是,向卟啉分子中添加金属离子会导致ET。在整个修改过程中,使用CV和SECM方法观察到一致的趋势。此外,k(eff)值(在不同的修改周期内获得的表观异构速率常数)证实了这些结果的有效性。当衬底电势相对于Ag / AgCl为0.5 V时,SECM图像用于在修饰过程中收集表面信息。底物电势的影响表明,由于卟啉环带正电荷和探针分子带负电荷的相似双分子反应,卟啉分子的氧化受到更多正电势的支持。

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