首页> 外文期刊>Journal of the American Chemical Society >Interrogation Of Surfaces For The Quantification Of Adsorbed Species On Electrodes: Oxygen On Gold And Platinum Inneutral Media
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Interrogation Of Surfaces For The Quantification Of Adsorbed Species On Electrodes: Oxygen On Gold And Platinum Inneutral Media

机译:询问表面以定量电极上的吸附物种:金和铂中性介质上的氧气

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We introduce a new in situ electrochemical technique based on the scanning electrochemical microscope (SECM) operating in a transient feedback mode for the detection and direct quantification of adsorbed species on the surface of electrodes. A SECM tip generates a titrant from a reversible redox mediator that reacts chemically with an electrogenerated or chemically adsorbed species at a substrate of about the same size as the tip, which is positioned at a short distance from it (ca.1 μm). The reaction between the titrant and the adsorbate provides a transient positive feedback loop until the adsorbate is consumed completely. The sensing mechanism is provided by the contrast between positive and negative feedback, which allows a direct quantification of the charge neutralized at the substrate. The proposed technique allows quantification of the adsorbed species generated at the substrate at a given potential under open circuit conditions, a feature not attainable with conventional electrochemical methods. Moreover, the feedback mode allows the tip to be both the titrant generator and detector, simplifying notably the experimental setup. The surface interrogation technique we introduce was tested for the quantification of electrogenerated oxides (adsorbed oxygen species) on gold and platinum electrodes at neutral pH in phosphate and TRIS buffers and with two different mediator systems. Good agreement is found with cyclic voltammetry at the substrate and with previous results in the literature, but we also find evidence for the formation of "incipient oxides" which are not revealed by conventional voltammetry. The mode of operation of the technique is supported by digital simulations, which show good agreement with the experimental results.
机译:我们介绍了一种基于瞬态反馈模式的扫描电化学显微镜(SECM)的新的原位电化学技术,用于检测和直接定量电极表面上的吸附物质。 SECM尖端从可逆的氧化还原介体生成滴定剂,该滴定剂在与该尖端大约相同尺寸(约1μm)的基底上与电生成或化学吸附的物质发生化学反应。滴定剂与被吸附物之间的反应提供了一个瞬态正反馈回路,直到被吸附物完全消耗为止。感应机制由正反馈和负反馈之间的对比度提供,可以直接量化在基板上中和的电​​荷。所提出的技术允许定量在开路条件下在给定电势下在基板上产生的吸附物质,这是常规电化学方法无法实现的特征。此外,反馈模式使针尖既可以用作滴定剂生成器又可以用作检测器,从而显着简化了实验设置。我们介绍的表面询问技术经过测试,用于在磷酸盐和TRIS缓冲液以及两种不同介体系统中,在中性pH下对金和铂电极上的电生成氧化物(吸附的氧种类)进行定量。在基材上使用循环伏安法与文献中的先前结果发现了很好的一致性,但是我们还发现了形成“起始氧化物”的证据,而常规伏安法并未揭示这些证据。该技术的操作模式由数字仿真支持,与实验结果显示出很好的一致性。

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