Department of Chemistry, Faculty of Art and Science, Çanakkale Onsekiz Mart University, 17100, Çanakkale, Turkey.
Department of Chemistry, Faculty of Engineering, Istanbul University-Cerrahpasa, Avcilar, 34320, Istanbul, Turkey.
Mikrochim Acta. 2022 Mar 31;189(4):167. doi: 10.1007/s00604-022-05271-z.
A novel amperometric method is presented for the determination of total antioxidant capacity in flow injection analysis (FIA) system using copper(II)-neocuproine complex modified on Nafion-functionalized multi-walled carbon nanotube-glassy carbon electrode ([Cu(Ncp)]/Nf@f-MWCNT/GCE). Cyclic voltammetric studies showed that the modified electrode exhibits a very well-formed reversible redox couple for Cu(II)-/Cu(I)-complex. In addition, the [Cu(Ncp)]/[Cu(Ncp)] redox pair shows very good electrocatalytic activity towards the oxidation of polyphenolic compounds (PPhCs) such as trolox, catechin, and quercetin due to the enhancement of the anodic peak current of the redox couple in the presence of these analytes. This electrocatalytic oxidation current at the [Cu(Ncp)]/Nf@f-MWCNT/GCE was used for flow injection (FI) amperometric determination of PPhCs. FI amperometric-time curves recorded under optimized conditions (applied potential: + 0.6 V vs. Ag/AgCl/KCl, flow rate: 2 mL/min) showed that the proposed electrode had a wide linear range (LR) with a very low detection limit (LOD) for PPhCs. LR and LOD were 0.5-800 and 0.2 µM for trolox, respectively and 0.50-250 and 0.14 µM, respectively, for both quercetin and catechin. This sensitive method was successfully applied to the amperometric measurement of total antioxidant capacity (TAC) of some herbal teas, giving compatible results with the spectrophotometric CUPRAC method. The proposed method gave higher rank to fast-reacting antioxidants; it was equally precise but had a wider linear range and lower LOD than the spectrophotometric CUPRAC assay (e.g., LOD for ascorbic acid and gallic acid were 0.07 and 0.08 μM, respectively), and similar electroanalytical methods using the CUPRAC reagent.
一种新颖的电流测定法被提出,用于在流动注射分析(FIA)系统中测定总抗氧化能力,该方法使用铜(II)-新铜络合物修饰在 Nafion 功能化多壁碳纳米管-玻碳电极([Cu(Ncp)]/Nf@f-MWCNT/GCE)上。循环伏安研究表明,修饰电极表现出非常好的形成可逆氧化还原对,用于 Cu(II)-/Cu(I)-配合物。此外,由于存在这些分析物时,[Cu(Ncp)]/[Cu(Ncp)]氧化还原对的阳极峰电流增强,[Cu(Ncp)]/[Cu(Ncp)]氧化还原对对多酚化合物(PPhCs)如 Trolox、儿茶素和槲皮素的氧化具有很好的电催化活性。在[Cu(Ncp)]/Nf@f-MWCNT/GCE 上,这种电催化氧化电流被用于流动注射(FI)安培法测定 PPhCs。在优化条件下(施加电位:+0.6 V 对 Ag/AgCl/KCl,流速:2 mL/min)记录的 FI 安培时间曲线表明,该电极对 PPhCs 具有宽线性范围(LR)和非常低的检测限(LOD)。LR 和 LOD 分别为 Trolox 的 0.5-800 和 0.2 μM,槲皮素和儿茶素的 0.50-250 和 0.14 μM。该灵敏方法成功地应用于一些草药茶的总抗氧化能力(TAC)的安培测量,与分光光度 CUPRAC 法给出了兼容的结果。该方法对快速反应的抗氧化剂给予了更高的排名;它同样精确,但具有比分光光度 CUPRAC 测定法更宽的线性范围和更低的 LOD(例如,抗坏血酸和没食子酸的 LOD 分别为 0.07 和 0.08 μM),以及使用 CUPRAC 试剂的类似电分析方法。