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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Synthesis of 1,4-hydroquinone-terminated alkanethiol and self-assembly on gold as characterized by interfacial electrochemistry, electrocatalysis application and ab initio calculation based on comparison with catechol-presenting analogue
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Synthesis of 1,4-hydroquinone-terminated alkanethiol and self-assembly on gold as characterized by interfacial electrochemistry, electrocatalysis application and ab initio calculation based on comparison with catechol-presenting analogue

机译:通过与邻苯二酚类似物的比较,通过界面电化学,电催化应用和从头算的方法表征了1,4-对苯二酚封端的烷硫醇的合成及其在金上的自组装

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Synthesis and self-assembly of a mercaptoundecaneamide derivative having a terminus of 1,4-hydroquinone (QT) are described. Electrochemical measurements on the QT-modified Au electrode revealed that the alkanethiol compound undergoes self-assembly to exhibit specific electrochemical activity originates from the reversible quinone/hydroquinone redox reaction at the terminus. We have achieved to obtain the electrochemical active surface coverage (0.11 nmol cm(-2)), formal potential (+246 mV, pH 3, Ag/AgCl) that changes pH-dependently (58 mV per pH) and also a set of the electron transfer reaction parameters, all of which were consistent with those of the previously reported structural isomer, catechol-terminated mercaptoundecaneamide (CT). Contrastingly, we found that these alkanethiol monolayers give marked contrast in an elecrocatalysis application: the CT-monolayer electrodes showed electrocatalytic capability in oxidation of NADH solution species while the QT-monolayer electrodes did not at all. By comparing some results of theoretical approach, we have attributed the surface selectivity to the spatiality of particular molecular orbital in the catalysis molecule. This observation should be important as an example of spatiality-reactivity relationships in a molecular design of chemically modified electrode. (C) 2008 Elsevier B.V. All rights reserved.
机译:描述了具有1,4-氢醌(QT)末端的巯基癸酰胺衍生物的合成和自组装。在QT修饰的Au电极上进行的电化学测量表明,链烷硫醇化合物进行自组装以表现出特定的电化学活性,该活性来自末端的可逆醌/对苯二酚氧化还原反应。我们已经获得了电化学活性表面覆盖率(0.11 nmol cm(-2)),形式电势(+246 mV,pH 3,Ag / AgCl),其依赖于pH值变化(每个pH 58 mV),并且还有一组电子转移反应参数,所有这些均与先前报道的结构异构体邻苯二酚封端的巯基十一酰胺(CT)一致。相比之下,我们发现这些烷硫醇单分子层在电催化应用中具有明显的对比:CT单分子层电极显示出对NADH溶液物种氧化的电催化能力,而QT单分子层电极则完全没有。通过比较理论方法的一些结果,我们将表面选择性归因于催化分子中特定分子轨道的空间性。该观察结果应作为化学修饰电极分子设计中空间反应性关系的一个例子很重要。 (C)2008 Elsevier B.V.保留所有权利。

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