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首页> 外文期刊>Chemical science >Gold–carbonyl group interactions in the electrochemistry of anthraquinone thiols self-assembled on Au(111)-surfaces
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Gold–carbonyl group interactions in the electrochemistry of anthraquinone thiols self-assembled on Au(111)-surfaces

机译:自组装在Au(111)-表面上的蒽醌硫醇的电化学中的金-羰基相互作用

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New anthraquinone derivatives with either a single or two thiol groups (AQ1 and AQ2) were synthesized and immobilized in self-assembled monolayers (SAMs) on Au(111) electrodes via Au–S bonds. The resultant AQ1- and AQ2-SAMs were studied by cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS), which enabled mapping of the gold–carbonyl group interactions and other dynamics in the Au–S bound molecular framework. Understanding of these interactions is important for research on thiol-coated gold nanoclusters, since (I) anthraquinone derivatives are a major compound family for providing desired redox functionality in multifarious assays or devices, and (II) the gold–carbonyl interactions can strongly affect anthraquinone electrochemistry. Based on equivalent circuit analysis, it was found that there is a significant rise in polarization resistance (related to SAM structural reorganization) at potentials that can be attributed to the quinone/semi-quinone interconversion. The equivalent circuit model was validated by calculation of pseudocapacitance for quinone-to-hydroquinone interconversion, in good agreement with the values derived from CV. The EIS and CV patterns obtained provide consistent evidence for two different ECEC ( i.e. proton-controlled ET steps, PCET) pathways in AQ1- and AQ2-SAMs. Notably, it was found that the formal reorganization (free) energies obtained for the elementary PCET steps are unexpectedly small for both SAMs studied. This anomaly suggests high layer rigidity and recumbent molecular orientation on gold surfaces, especially for the AQ2-SAMs. The results strongly indicate that gold–carbonyl group interactions can be controlled by favorable structural organization of anthraquinone-based molecules on gold surfaces.
机译:合成了具有一个或两个硫醇基团(AQ1和AQ2)的新蒽醌衍生物,并通过Au–S键将其固定在Au(111)电极上的自组装单层(SAMs)中。通过循环伏安法(CV)和电化学阻抗谱(EIS)研究了所得的AQ1-和AQ2-SAM,这使得能够绘制金-羰基相互作用以及Au-S结合的分子框架中的其他动力学。了解这些相互作用对于硫醇包覆的金纳米簇的研究非常重要,因为(I)蒽醌衍生物是主要化合物家族,可在多种测定或装置中提供所需的氧化还原功能,并且(II)金-羰基相互作用可强烈影响蒽醌。电化学。基于等效电路分析,发现在归因于醌/半醌互变的电势下,极化电阻(与SAM结构重组有关)显着增加。通过计算拟电容对苯醌至对苯二酚的互转换,验证了等效电路模型,与从CV得到的值非常吻合。获得的EIS和CV模式为AQ1-和AQ2-SAM中的两个不同ECEC(即质子控制的ET步长,PCET)途径提供了一致的证据。值得注意的是,发现对于所研究的两个SAM,基本PCET步骤获得的形式重组(自由)能都出乎意料地小。这种异常现象表明金表面具有较高的层刚度和倾斜的分子取向,特别是对于AQ2-SAM。结果强烈表明,金-羰基基团的相互作用可以通过金表面蒽醌类分子的良好结构组织来控制。

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