Alexander B. Kifle, N. Malakhova, A. Ivoilova, Nataliya Leonova, Svetlana Saraeva, A. Kozitsina
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Cyclic voltammetry investigations revealed the dependence of the electrochemical performance of Sb/SPCEs on the degree of coverage of the substrate with the metal. The obtained CV, EIS, and SEM data are consistent. The lowest charge transfer resistance (Rct) value (6 Ω) was obtained at Sb/SPCE with the highest degree of antimony coverage. To investigate the electroanalytical performance of Sb/SPCEs, nickel (II) ions were utilized as a model analyte. A study of roughness factors and sensitivity towards nickel (II) ions for Sb/SPCEs using two-tailed Pearson's criterion revealed a high degree of correlation between their electrochemical and electroanalytical properties. 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引用次数: 0
摘要
本研究比较了不同电位静电预镀条件下用锑修饰的丝网印刷碳电极(SPCE)(Sb/SPCE)的电化学性能。采用中性红(NR)作为新型氧化还原探针来评估 Sb/SPCE 的电化学性能。研究表明,质子化形式的 NR 在磷酸盐缓冲溶液(pH 值为 5.5±0.5)中的裸 SPCE 和 Sb/SPCE 上发生了准可逆的氧化还原转变,电位范围为 (-0.30)-(-0.75) V,其中锑不具有电活性。通过循环伏安法(CV)/电化学阻抗谱法(EIS)对锑/SPCE 进行了电化学研究,并通过扫描电子显微镜(SEM)对其形态进行了研究。循环伏安法研究表明,Sb/SPCEs 的电化学性能取决于金属对基底的覆盖程度。所获得的 CV、EIS 和 SEM 数据是一致的。锑覆盖度最高的 Sb/SPCE 的电荷转移电阻 (Rct) 值(6 Ω)最低。为了研究 Sb/SPCE 的电分析性能,使用了镍(II)离子作为模型分析物。使用双尾皮尔逊标准对 Sb/SPCE 的粗糙度系数和对镍(II)离子的灵敏度进行的研究表明,它们的电化学和电分析性能之间存在高度相关性。结果表明,在开发创新型含锑传感器的过程中,使用 NR 作为氧化还原探针有助于控制改性过程。
Evaluation of electrochemical performance of antimony modified screen-printed carbon electrodes
This study compares the electrochemical performance of screen-printed carbon electrodes (SPCEs) modified with antimony (Sb/SPCEs) under different potentiostatic pre-plating conditions. Neutral Red (NR) was employed as a novel redox probe to evaluate the electrochemical performance of Sb/SPCEs. It was demonstrated that NR in the protonated form performs quasi-reversible redox transformations at bare SPCE and Sb/SPCEs in phosphate buffer solutions (pH 5.5±0.5) in the potential range of (−0.30)–(−0.75) V, where the antimony is not electroactive. Sb/SPCEs were studied electrochemically by cyclic voltammetry (CV) / electrochemical impedance spectroscopy (EIS), and morphologically by scanning electron microscopy (SEM). Cyclic voltammetry investigations revealed the dependence of the electrochemical performance of Sb/SPCEs on the degree of coverage of the substrate with the metal. The obtained CV, EIS, and SEM data are consistent. The lowest charge transfer resistance (Rct) value (6 Ω) was obtained at Sb/SPCE with the highest degree of antimony coverage. To investigate the electroanalytical performance of Sb/SPCEs, nickel (II) ions were utilized as a model analyte. A study of roughness factors and sensitivity towards nickel (II) ions for Sb/SPCEs using two-tailed Pearson's criterion revealed a high degree of correlation between their electrochemical and electroanalytical properties. The results show that using NR as a redox probe can help controlling modification processes during the development of innovative antimony-containing sensors.