Antimony Tin Oxide—Prussian Blue Screen-Printed Electrodes for Electrochemical Sensing of Potassium Ions

C. Lete, M. Marin, F. D. del Campo, I. Diaconu, Stelian Lupu
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Abstract

In this work, the characterization and the electro-analytical applications of antimony tin oxide (ATO)–Prussian blue (PB) screen printed electrodes (SPE) are presented. The ATO conducting particles have been used recently in the development of screen-printed electrodes due to their excellent spectroelectrochemical properties. PB is a transition metal hexacyanoferrate with high electrocatalytic properties towards various biologically active compounds like hydrogen peroxide, besides its outstanding electrochromic properties. A combination of ATO and PB ingredients into a screen-printing paste provided a versatile and cost-effective way in the development of novel electrode materials for electrochemical sensing. The ATO-PB electrode material displayed good electrochemical properties demonstrated by means of cyclic voltammetry and electrochemical impedance measurements. In addition, the PB provided a high selectivity towards potassium ions in solution due to its zeolitic structures and excellent redox behavior. The cyclic voltammetric responses recorded at the ATO-PB-SPE device in the presence of potassium ions revealed a linear dependence of the cathodic peak current and cathodic peak potential of the Prussian blue/Everitt’s salt redox system on the potassium concentrations ranging from 0.1 to 10 mM. This finding could be exploited in the development of an electrochemical sensor for electro-inactive chemical species. The potential application of the ATO-PB electrode in the electrochemical sensing of electro-active species like caffeic acid was also studied. An increase of the anodic peak current of the PB/ES redox wave in the presence of caffeic acid was observed. These results point out to the potential analytical applications of the ATO-PB electrode in the sensing of both electro-active and electro-inactive species.
用于钾离子电化学传感的锑锡氧化-普鲁士蓝丝网印刷电极
本文介绍了氧化锑锡(ATO) -普鲁士蓝(PB)丝网印刷电极(SPE)的表征及其电分析应用。ATO导电颗粒由于其优异的光谱电化学性能,近年来在丝网印刷电极的开发中得到了广泛的应用。PB是一种过渡金属六氰高铁酸盐,除具有优异的电致变色性能外,还对过氧化氢等多种生物活性化合物具有较高的电催化性能。将ATO和PB成分组合成丝网印刷浆料,为开发新型电化学传感电极材料提供了一种多功能且经济有效的方法。循环伏安法和电化学阻抗测试表明,ATO-PB电极材料具有良好的电化学性能。此外,由于PB具有沸石结构和优异的氧化还原性能,对溶液中的钾离子具有很高的选择性。在ATO-PB-SPE装置上记录的钾离子存在下的循环伏安响应显示,普鲁士蓝/埃弗里特盐氧化还原体系的阴极峰电流和阴极峰电位与钾浓度在0.1 ~ 10 mM范围内呈线性关系。这一发现可用于开发电非活性化学物质的电化学传感器。研究了ATO-PB电极在咖啡酸等电活性物质电化学传感中的潜在应用。在咖啡酸的存在下,PB/ES氧化还原波的阳极峰电流有所增加。这些结果指出了ATO-PB电极在电活性和电非活性物质的传感分析中的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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