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Study of Ion Transfer Coupling with Electron Transfer by Hydrophilic Droplet Electrodes

机译:亲水性液滴电极与电子转移耦合的离子转移研究

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In a hydrophilic droplet three-electrode system, electroactive species within the droplet play very important roles in the electron-transfer (ET) process on the solid/electrolyte interface, which can then induce an ion-transfer (IT) reaction at the liquid/liquid interface. In this work, several redox couples and electroactive species are chosen to study ET-IT coupling processes at the water/1,2-dichloroethane (W/DCE) interface by cyclic voltammetry (CV) and Osteryoung square wave voltammetry (OSWV). Among them, the redox couple Ru(NH3)(6)(3+/2+) has been found to have the widest useful potential window of about 1.2 V. A hydrophilic droplet three-electrode system using a single electroactive molecule instead of a redox couple has been confirmed to be stable and has similar functionality to a redox couple. In addition, the lipophilicity of antiplatelet drug clopidogrel at the W/DCE interface is investigated and its ionic partition diagram has been constructed. Protonated clopidogrel is detected in a linear concentration range of 5.0-50 mu M and the limit of detection (LOD) is calculated to be 3.0 mu M by using the hydrophilic droplet system Ru(NH3)(6)(3+/2+) and OSWV.
机译:在亲水性液滴三电极系统中,液滴中的电活性物质在固体/电解质界面上的电子转移(ET)过程中起着非常重要的作用,然后可以在液体/溶液中引发离子转移(IT)反应。液体界面。在这项工作中,通过循环伏安法(CV)和Osteryoung方波伏安法(OSWV),选择了几种氧化还原对和电活性物质来研究水/ 1,2-二氯乙烷(W / DCE)界面处的ET-IT偶联过程。其中,已发现氧化还原对Ru(NH3)(6)(3 + / 2 +)具有最宽的可用电势窗,约为1.2V。使用单个电活性分子代替氢键的亲水性液滴三电极系统已经证实氧化还原对是稳定的,并且具有与氧化还原对相似的功能。此外,研究了抗血小板药物氯吡格雷在W / DCE界面的亲脂性,并构建了其离子分配图。使用亲水性液滴系统Ru(NH3)(6)(3 + / 2 +)在5.0-50μM的线性浓度范围内检测到质子化的氯吡格雷,并且将检测限(LOD)计算为3.0μM。和OSWV。

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