Department of Chemistry, University of Ioannina, Ioannina, 451 10, Greece.
Department of Chemistry, Masaryk University, Brno, 625 00, Czech Republic.
Talanta. 2020 Nov 1;219:121313. doi: 10.1016/j.talanta.2020.121313. Epub 2020 Jun 26.
Here we report for the first time the development of a compact, closed bipolar electrochemistry (BPE) device for the determination of antioxidant capacity in real-world samples by recording the onset driving voltage at which an eye-visible reporting event at the cathode pole of bipolar electrode (BE) occurs. The BPE cell consists of two distinct anode and cathode compartments that are electrically connected through a platinum wire BE. The anode pole of the BE is covered by a cellulose acetate thin film to prevent the fouling of the surface, while the cathode pole is embedded into an agarose hydrogel containing phenolphthalein, i.e., an acid-base indicator. The method relies on the oxidation of the reducing compounds in the sample by a fixed amount of HO and the electro oxidation of the remaining HO in the anode pole of the BE. This reaction triggers the reduction of water at the cathodic pole accompanied by the production of hydroxyl ions at different, HO concentration-dependent onset driving voltages. The resulting increase of pH at the cathode pole results in the formation of a pink spot (reporting event), which is visible by the unaided eye. The applicability of the BPE device for the determination of antioxidant capacity in fruit juices and sodas is demonstrated. The analytical results, expressed as Trolox (TEAC) or Vitamin C (CVEAC) equivalent antioxidant capacity, correlate well with those obtained by the CUPRAC method.
我们首次报道了一种紧凑、封闭的双极电化学(BPE)设备的开发,该设备通过记录在双极电极(BE)阴极极发生可见报告事件时的起始驱动电压,来测定实际样品中的抗氧化能力。BPE 池由两个不同的阳极和阴极隔室组成,通过铂丝 BE 电连接。BE 的阳极被醋酸纤维素薄膜覆盖,以防止表面污垢,而阴极则嵌入含有酚酞的琼脂糖水凝胶中,即酸碱指示剂。该方法依赖于一定量的 HO 氧化样品中的还原化合物,以及 BE 阳极中剩余的 HO 的电氧化。该反应引发阴极的水还原,伴随着不同的 HO 浓度依赖性起始驱动电压下羟基离子的产生。阴极的 pH 值升高导致粉红色斑点(报告事件)的形成,肉眼可见。该 BPE 设备用于测定果汁和苏打水中的抗氧化能力的适用性得到了验证。以 Trolox(TEAC)或维生素 C(CVEAC)当量抗氧化能力表示的分析结果与 CUPRAC 方法得到的结果密切相关。