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Exploring the applications of a pulsating jet hydrodynamic modulated voltammetric (HMV) system – Electrochemistry of nanostructured Pt electrodes and trace analysis

机译:探讨脉动射流水力调制伏安(HmV)系统的应用 - 纳米结构pt电极的电化学和痕量分析

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摘要

The electrochemistry of nanostructured electrodes is investigated using hydrodynamic modulated voltammetry (HMV). Here a liquid crystal templating process is used to produce a platinum modified electrode with a relatively high surface area (Roughness factor, Rf = 42.4). The electroreduction of molecular oxygen at a nanostructured platinum surface is used to demonstrate the ability of HMV to discriminate between Faradaic and non-Faradaic electrode reactions. The HMV approach shows that the reduction of molecular oxygen shows considerable hysteresis correlating with the formation and stripping of oxide species at the platinum surface. Without the HMV analysis it is difficult to discern the same detail under the conditions employed. In addition the detection limit of the apparatus is explored and shown, under ideal conditions, to be of the order of 45 nmol dm^?3 employing [Fe(CN)6]^4? as a test species.
机译:纳米结构电极的电化学研究使用流体力学伏安法(HMV)。在这里,液晶模板工艺用于生产具有相对较高表面积(粗糙度系数,Rf = 42.4)的铂改性电极。纳米结构铂表面上分子氧的电还原被用来证明HMV区分法拉第电极反应和非法拉第电极反应的能力。 HMV方法表明,分子氧的还原显示出显着的磁滞现象,这与铂表面氧化物种类的形成和剥离有关。如果没有HMV分析,则很难在所采用的条件下分辨出相同的细节。另外,在理想条件下,采用[Fe(CN)6] ^ 4 ^ 4,探索并显示出该装置的检测极限为约45nmol dm ^^ 3。作为测试物种。

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