Anal Chem. 2013 Aug 20;85(16):7645-9. doi: 10.1021/ac401571w. Epub 2013 Jul 30.
To overcome the shortcomings of electroanalytical methods in analyzing the ionic reaction products that are either electrochemically inert or lack distinct electrochemical/spectroscopic fingerprints, we suggest combining voltammetry with ion chromatography by applying online sample collection to the electrochemical cell and offline ion chromatographic analysis. This combination allows a quantitative analysis including the potential dependence of the product distribution in a straightforward way. As a proof-of-concept example, we discuss the formation of ionic reaction products from nitrate reduction on Pt and Sn-modified Pt electrode in acid. On the Pt electrode, ammonia was the only identifiable product. After Sn modification of the Pt electrode, a change in selectivity was observed to hydroxylamine as the dominant product. Moreover, the rate determining step of nitrate reduction (reduction to nitrite) was enhanced by Sn modification of the Pt electrode, and a significant concentration of nitrite was evidenced on a Pt electrode with a high coverage of Sn species. The suggested combination of voltammetry and online ion chromatography hence proves very useful in the quantitative elucidation of electrocatalytic reactions with different ionic products.
为了克服电化学分析方法在分析电化学惰性或缺乏明显电化学/光谱指纹的离子反应产物方面的不足,我们建议通过将在线样品收集应用于电化学池并进行离线离子色谱分析,将伏安法与离子色谱法结合使用。这种组合可以以一种简单的方式进行包括产物分布的电位依赖性的定量分析。作为概念验证示例,我们讨论了在酸性介质中 Pt 和 Sn 修饰的 Pt 电极上硝酸盐还原形成的离子反应产物。在 Pt 电极上,氨是唯一可识别的产物。Pt 电极经 Sn 修饰后,观察到选择性发生变化,羟胺成为主要产物。此外,Sn 修饰 Pt 电极增强了硝酸盐还原(还原为亚硝酸盐)的速控步骤,在 Pt 电极上 Sn 物种高覆盖率的情况下,亚硝酸盐的浓度明显增加。因此,伏安法和在线离子色谱法的组合非常有助于定量阐明具有不同离子产物的电催化反应。