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6-巯基嘌呤自组装单分子层(6MP-SAM)中的溶液pH对Au(111)单晶电极的影响。

Influence of the solution pH in the 6-mercaptopurine self-assembled monolayer (6MP-SAM) on a Au(111) single-crystal electrode.

作者信息

Madueño Rafael, García-Raya Daniel, Viudez Alfonso J, Sevilla José M, Pineda Teresa, Blázquez Manuel

机构信息

Departamento de Química Física y Termodinámica Aplicada, Universidad de Córdoba, Campus de Rabanales, Ed. Marie Curie, E-14071 Córdoba, Spain.

出版信息

Langmuir. 2007 Oct 23;23(22):11027-33. doi: 10.1021/la701231d. Epub 2007 Sep 29.

Abstract

Self-assembled monolayers (SAMs) of 6-mercaptopurine (6MP) have been prepared on a Au(111) single-crystal electrode by immersion of the metal surface in a 100 microM 6MP and 0.01 M HClO4 solution. The 6MP-SAM Au(111) single-crystal electrodes were transferred to the cell and allowed to equilibrate with the different aqueous working solutions before the electrochemical experiments. The influence of the solution pH was studied by cyclic voltammetry, double layer capacitance curves, and electrochemical impedance spectroscopy. The electrochemical behavior of the 6MP-SAM in acetic acid at pH 4 presents important differences in comparison to that obtained in 0.1 M KOH solutions. Cyclic voltammograms for the reductive desorption process in acid medium are broad and show some features that can be explained by a phase transition between a chemisorbed and a physisorbed state of the 6MP molecules. The low solubility of these molecules in acid medium could explain this phenomenon and the readsorption of the complete monolayer when the potential is scanned in the positive direction. The variation of the double-layer capacitance values in the potential range of monolayer stability with the pH suggests that the acid-base chemistry of the 6MP molecules is playing a role. This fact has been studied by following the variations of the electron-transfer rate constant of the highly charged redox probes as are Fe(CN)(6)-3/-4 and Ru(NH3)(6)+3/+2 as a function of solution pH. The apparent surface pKa value for the 6MP-SAM (pKa approximately 8) is explained by the total conversion of the different 6MP tautomers that exist in solution to the thiol species in the adsorbed state.

摘要

通过将金属表面浸入100微摩尔/升的6-巯基嘌呤(6MP)和0.01摩尔/升的高氯酸溶液中,在金(111)单晶电极上制备了6-巯基嘌呤自组装单分子层(SAMs)。在进行电化学实验之前,将6MP-SAM金(111)单晶电极转移到电解池中,并使其与不同的水性工作溶液达到平衡。通过循环伏安法、双层电容曲线和电化学阻抗谱研究了溶液pH值的影响。与在0.1摩尔/升氢氧化钾溶液中获得的结果相比,6MP-SAM在pH为4的乙酸中的电化学行为存在重要差异。酸性介质中还原脱附过程的循环伏安图很宽,并显示出一些特征,这些特征可以用6MP分子在化学吸附态和物理吸附态之间的相变来解释。这些分子在酸性介质中的低溶解度可以解释这种现象以及当电位正向扫描时完整单分子层的再吸附。单层稳定性电位范围内双层电容值随pH值的变化表明6MP分子的酸碱化学在起作用。通过跟踪高电荷氧化还原探针如铁氰化物(6)-3/-4和钌氨络合物(6)+3/+2的电子转移速率常数随溶液pH值的变化来研究这一事实。6MP-SAM的表观表面pKa值(pKa约为8)可以通过溶液中存在的不同6MP互变异构体完全转化为吸附态的硫醇物种来解释。

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