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Electrochemistry in MicroscoPic Domains. 1. The Electrochemical Cell and Its Voltammetric and Amperometric Response

机译:MicroscoPic域中的电化学。 1.电化学电池及其伏安和安培响应

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Microscopic aqueous sample droplets of nano- and picoliter volumes were formed on the bottom of a polystyrene dish under water-saturated heptane. The electrochemical cell consisted of a beveled carbon fiber microdisk working electrode and a reference electrode with a miniature junction, both inserted into the studied droplet. Both electrodes had a nominal tip diameter of 7.5 μm. Cyclic voltammetry and chronoamperometry in droplets of 3.3 mM ruthenium hexaammine trichloride in 0.1 M KCI solution were performed with this system. The experiments revealed for the first time major deviations in both voltammetric and amperometric microelectrode behavior in picoliter domains as compared to nanoliter volume and bulk solution. The concept and criteria of electrochemical microscopicity of volume is discussed. This work also provides a simple and robust experimental model system to verify electrochemical experiments in restricted domains such as in or near single biological cells or in microscopic tissue cavities. The methodology developed has, however, more general analytical and physicochemical applications as well.
机译:在水饱和的庚烷下,在聚苯乙烯皿的底部形成了纳升和皮升体积的微观水样液滴。电化学电池由带斜角的碳纤维微盘工作电极和带有微型结的参比电极组成,两者均插入了研究的液滴中。两个电极的标称尖端直径均为7.5μm。用该系统在3.3 mM六氯化钌三胺钌在0.1 M KCI溶液中的液滴中进行循环伏安法和计时电流法。实验首次揭示了与纳升体积和本体溶液相比,微升域中伏安和安培微电极行为的主要偏差。讨论了体积电化学微观的概念和标准。这项工作还提供了一个简单而强大的实验模型系统,以验证在受限区域(例如在单个生物细胞内或附近或在微观组织腔内)的电化学实验。但是,开发的方法学也具有更一般的分析和物理化学应用。

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