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通过施加适度的阴极/阳极电势来开启/关闭基于硫辛酸的自组装单层在金上的化学吸附。

Switching on/off the chemisorption of thioctic-based self-assembled monolayers on gold by applying a moderate cathodic/anodic potential.

机构信息

Laboratoire d'Electrochimie Moléculaire, UMR CNRS 7591, Université Paris Diderot, Sorbonne Paris Cité, 15 rue Jean-Antoine de Baïf, F-75205 Paris cedex, France.

出版信息

Langmuir. 2013 Apr 30;29(17):5360-8. doi: 10.1021/la401117u. Epub 2013 Apr 15.

Abstract

An in situ and real-time electrochemical method has been devised for quantitatively monitoring the self-assembly of a ferrocene-labeled cyclic disulfide derivative (i.e., a thioctic acid derivative) on a polycrystalline gold electrode under electrode polarization. Taking advantage of the high sensitivity, specificity, accuracy, and temporal resolution of this method, we were able to demonstrate an unexpectedly facilitated formation of the redox-active SAM when the electrode was held at a moderate cathodic potential (-0.4 V vs SCE in CH3CN), affording a saturated monolayer from only micromolar solutions in less than 10 min, and a totally impeded SAM growth when the electrode was polarized at a slightly anodic potential (+0.5 V vs SCE in CH3CN). This method literally allows for switching on/off the formation of SAMs under "soft" conditions. Moreover the cyclic disulfide-based SAM was completely desorbed at this potential contrary to the facilitated deposition of a ferrocene-labeled alkanethiol. Such a strikingly contrasting behavior could be explained by an energetically favored release of the thioctic-based SAM through homolytic cleavage of the Au-S bond followed by intramolecular cyclization of the generated thiyl diradicals. Moreover, the absence of a discernible transient faradaic current response during the potential-assisted adsorption/desorption of the redox-labeled cyclic disulfide led us to conclude in a potential-dependent reversible surface reaction where no electron is released or consumed. These results provide new insights into the formation of disulfide-based SAMs on gold but also raise some fundamental questions about the intimate mechanism involved in the facilitated adsorption/desorption of SAMs under electrode polarization. Finally, the possibility to easily and selectively address the formation/removal of thioctic-based SAMs on gold by applying a moderate cathodic/anodic potential offers another degree of freedom in tailoring their properties and in controlling their self-assembly, nanostructuration, and/or release.

摘要

已经设计出一种原位实时电化学方法,用于定量监测在电极极化下,在多晶金电极上自组装一种二茂铁标记的环状二硫化物衍生物(即硫辛酸衍生物)。利用该方法的高灵敏度、特异性、准确性和时间分辨率,我们能够证明在电极处于中等阴极电势(在 CH3CN 中相对于 SCE 为-0.4 V)时,出乎意料地促进了氧化还原活性 SAM 的形成,仅从微摩尔溶液中在不到 10 分钟内即可获得饱和单层,并且当电极在略微阳极电势(在 CH3CN 中相对于 SCE 为+0.5 V)极化时,完全阻碍了 SAM 的生长。这种方法实际上可以在“软”条件下打开/关闭 SAM 的形成。此外,与促进的二茂铁标记的烷硫醇的沉积相反,基于循环二硫化物的 SAM 在该电位下完全解吸。这种截然不同的行为可以通过 Au-S 键的均裂以及生成的硫基自由基的分子内环化来解释,从而使基于硫辛酸的 SAM 从能量上有利地释放。此外,在氧化还原标记的循环二硫化物的电位辅助吸附/解吸过程中没有明显的瞬态法拉第电流响应,这使我们得出结论,在电位依赖性可逆表面反应中,没有电子释放或消耗。这些结果提供了有关金上基于二硫化物的 SAM 形成的新见解,但也提出了一些关于在电极极化下促进 SAM 的吸附/解吸所涉及的基本机制的基本问题。最后,通过施加中等阴极/阳极电势,可以轻松且选择性地控制硫辛酸基 SAM 的形成/去除,从而为调整其性质以及控制其自组装、纳米结构化和/或释放提供了另一个自由度。

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