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将电化学与荧光共焦显微镜相结合研究电化学反应性:以 Resazurin-Resorufin 荧光偶联物为例。

Coupling Electrochemistry with Fluorescence Confocal Microscopy To Investigate Electrochemical Reactivity: A Case Study with the Resazurin-Resorufin Fluorogenic Couple.

机构信息

Chimie Analytique et Chimie des Interfaces, Faculté des Sciences, Université libre de Bruxelles (ULB) , Boulevard du Triomphe, 2, CP 255, B-1050 Bruxelles, Belgium.

Univ. Bordeaux , ISM, UMR 5255, F-33400 Talence, France.

出版信息

Anal Chem. 2016 Jun 21;88(12):6292-300. doi: 10.1021/acs.analchem.6b00477. Epub 2016 Jun 1.

Abstract

The redox couple resazurin-resorufin exhibits electrofluorochromic properties which are investigated herein by absorption and fluorescence spectroelectrochemistry and by electrochemically coupled-fluorescence confocal laser scanning microscopy (EC-CLSM). At pH 10, the highly fluorescent resorufin dye is generated at the electrode surface by the electrochemical reduction of the poorly fluorescent resazurin. Performing EC-CLSM at electrode surfaces allows to monitor spatially resolved electrochemical processes in situ and in real time. Using a small (315 μm diameter) cylindrical electrode, a steady-state diffusion layer builds up under potentiostatic conditions at -0.45 V vs Ag|AgCl. Mapping the fluorescence intensity in 3D by CLSM enables us to reconstruct the relative concentration profile of resorufin around the electrode. The comparison of the experimental diffusion-profile with theoretical predictions demonstrates that spontaneous convection has a direct influence on the actual thickness of the diffusion layer, which is smaller than the value predicted for a purely diffusional transport. This study shows that combining fluorescence CLSM with electrochemistry is a powerful tool to study electrochemical reactivity at a spatially resolved level.

摘要

氧化还原偶联物试卤灵-还原试卤灵具有电致变色性质,本研究通过吸收和荧光光谱电化学以及电化学耦合荧光共聚焦激光扫描显微镜(EC-CLSM)进行了研究。在 pH 值为 10 时,通过电化学反应将荧光较弱的试卤灵还原为荧光较强的Resorufin 染料。在电极表面进行 EC-CLSM 可以原位实时监测空间分辨电化学过程。使用小(315μm 直径)圆柱形电极,在 -0.45 V vs Ag|AgCl 下施加恒电位条件下会在电极表面建立稳态扩散层。通过 CLSM 对荧光强度进行 3D 映射,我们能够重建电极周围 Resorufin 的相对浓度分布。将实验扩散分布与理论预测进行比较表明,自发对流直接影响实际扩散层的厚度,该厚度小于纯扩散传输预测的值。本研究表明,将荧光 CLSM 与电化学相结合是研究空间分辨水平电化学反应性的有力工具。

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