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具有定制氧化还原性质的黄素衍生物:合成、表征及电化学行为

Flavin Derivatives with Tailored Redox Properties: Synthesis, Characterization, and Electrochemical Behavior.

作者信息

Kormányos Attila, Hossain Mohammad S, Ghadimkhani Ghazaleh, Johnson Joe J, Janáky Csaba, de Tacconi Norma R, Foss Frank W, Paz Yaron, Rajeshwar Krishnan

机构信息

Department of Chemistry and Biochemistry, University of Texas at Arlington, Texas, 76019, USA.

Department of Physical Chemistry and Materials Science, University of Szeged, Szeged, 6720, Hungary.

出版信息

Chemistry. 2016 Jun 27;22(27):9209-17. doi: 10.1002/chem.201600207. Epub 2016 May 31.

Abstract

This study establishes structure-property relationships for four synthetic flavin molecules as bioinspired redox mediators in electro- and photocatalysis applications. The studied flavin compounds were disubstituted with polar substituents at the N1 and N3 positions (alloxazine) or at the N3 and N10 positions (isoalloxazines). The electrochemical behavior of one such synthetic flavin analogue was examined in detail in aqueous solutions of varying pH in the range from 1 to 10. Cyclic voltammetry, used in conjunction with hydrodynamic (rotating disk electrode) voltammetry, showed quasi-reversible behavior consistent with freely diffusing molecules and an overall global 2e(-) , 2H(+) proton-coupled electron transfer scheme. UV/Vis spectroelectrochemical data was also employed to study the pH-dependent electrochemical behavior of this derivative. Substituent effects on the redox behavior were compared and contrasted for all the four compounds, and visualized within a scatter plot framework to afford comparison with prior knowledge on mostly natural flavins in aqueous media. Finally, a preliminary assessment of one of the synthetic flavins was performed of its electrocatalytic activity toward dioxygen reduction as a prelude to further (quantitative) studies of both freely diffusing and tethered molecules on various electrode surfaces.

摘要

本研究建立了四种合成黄素分子在电催化和光催化应用中作为仿生氧化还原介质的结构-性质关系。所研究的黄素化合物在N1和N3位(咯嗪)或N3和N10位(异咯嗪)被极性取代基二取代。在pH范围为1至10的不同水溶液中详细研究了一种此类合成黄素类似物的电化学行为。循环伏安法与流体动力学(旋转圆盘电极)伏安法结合使用,显示出与自由扩散分子一致的准可逆行为以及整体的全局2e(-)、2H(+)质子耦合电子转移机制。紫外/可见光谱电化学数据也用于研究该衍生物的pH依赖性电化学行为。比较并对比了所有四种化合物的取代基对氧化还原行为的影响,并在散点图框架内进行可视化,以便与先前关于水性介质中大多数天然黄素的知识进行比较。最后,对其中一种合成黄素对氧气还原的电催化活性进行了初步评估,作为进一步(定量)研究各种电极表面上自由扩散和 tethered 分子的前奏。

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