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首页> 外文期刊>Electrochimica Acta >Electrode modification using porous layers. Maximising the analytical response by choosing the most suitable voltammetry: Differential Pulse vs Square Wave vs Linear sweep voltammetry
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Electrode modification using porous layers. Maximising the analytical response by choosing the most suitable voltammetry: Differential Pulse vs Square Wave vs Linear sweep voltammetry

机译:使用多孔层进行电极修饰。通过选择最合适的伏安法来最大化分析响应:差分脉冲vs方波vs线性扫描伏安法

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摘要

The analytical benefits obtained from electrode modification with conductive porous layers, a common practice in the development of electrochemical (bio)sensors, are examined for the main electroanalytical techniques: differential pulse, square wave and linear sweep voltammetry. The electrochemical response is analyzed in terms of the effect of the modification on the electrode kinetics and on the diffusion transport of the target species. With respect to the former, the gain in the current predicted by simple enhancement of the electrode kinetics is analyzed, pointing out the improvement of the analytical sensitivity predicted in each voltammetric technique. Regarding the contribution of the thin-layer diffusion of the electroactive species trapped between the layers, we show that this gives rise to the lowering of the peak potential and the narrowing of the voltammograms, which can be wrongly attributed to electrocatalytic properties of the modified surface. In order to discriminate between electrocatalytic and mass transport effects, diagnosis tests are presented for differential pulse and square wave voltammetry.
机译:电化学多孔(生物)传感器开发中的一种常见做法是通过对导电多孔层进行电极修饰获得的分析益处被用于主要的电分析技术:差分脉冲,方波和线性扫描伏安法。根据修饰对电极动力学和靶物质的扩散传输的影响来分析电化学响应。关于前者,分析了通过简单提高电极动力学预测的电流增益,指出了每种伏安技术预测的分析灵敏度的提高。关于夹在两层之间的电活性物质的薄层扩散的贡献,我们表明这引起峰电位的降低和伏安图的变窄,这可能被错误地归因于改性表面的电催化性能。 。为了区分电催化作用和传质作用,提出了差分脉冲和方波伏安法的诊断测试。

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