Institute of Biochemical and Biomedical Engineering, Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, Taipei-106, Taiwan, ROC.
Institute of Biochemical and Biomedical Engineering, Department of Chemical Engineering and Biotechnology, National Taipei University of Technology, Taipei-106, Taiwan, ROC.
Anal Chim Acta. 2023 Sep 15;1274:341582. doi: 10.1016/j.aca.2023.341582. Epub 2023 Jul 1.
Tannic acid (TA) is a water-soluble polyphenol and used in beverages, medical fields as clarifying and additive agents. In daily life, TA is unavoidable, and excessive consumption of tannin containing foods can harm health. Thus, rapid and sensitive quantification is highly necessary. Herein, an eco-friendly fluorometric and electrochemical sensing of TA was developed based on a dysprosium(III)-metal-organic framework (Dy(III)-MOF). An aqueous dispersion of Dy(III)-MOF exhibits strong dual emissions at 479 and 572 nm with an excitation at 272 nm, due to the 4f-4f electronic transition and "antenna effect". Chromophore site of the functional ligand, and Dy(III) ion could potentially serve as a sensing probe for TA via quenching (fluorescence). The fluorometric sensor worked well in a wide linear range concentrations from 0.02 to 25 μM with a limit of detection (LOD) of 0.0053 μM. Secondly, the cyclic voltammetric of TA at Dy(III)-MOF modified screen-printed carbon electrode (SPCE) has been investigated. The Dy(III)-MOF/SPCE showed an anodic peak signal at +0.22 V with a five-fold stronger current than the control electrode surface. Under optimized sensing parameters, the Dy(III)-MOF/SPCE delivered wide linear concentrations from 0.01 to 200 μM with a LOD of 0.0023 μM (S/N = 3). Accessibility of real practical samples in alcoholic and juice-based beverages were quantified, resulting in superior recovery rates (98.13-99.53%), F-test, and t-test confirmed high reliability (<95% confidence level (n = 3)). Finally, practicability result of the electrochemical method was validated by fluorometric with a relative standard deviation (RSD) of 0.18-0.46 ± 0.17% (n = 3). The designed probe has proven to be a key candidate for the accurate analysis of TA in beverage samples to ensure food quality.
没食子酸(TA)是一种水溶性多酚,可用作澄清剂和添加剂,应用于饮料和医疗领域。在日常生活中,TA 是不可避免的,而摄入过多含单宁的食物会损害健康。因此,快速、灵敏地定量分析 TA 是非常必要的。在此,我们基于镝(III)-金属有机骨架(Dy(III)-MOF)开发了一种对 TA 的绿色荧光和电化学传感方法。Dy(III)-MOF 的水性分散体在 272nm 激发下于 479nm 和 572nm 处表现出强烈的双发射,这归因于 4f-4f 电子跃迁和“天线效应”。功能配体的发色团位点和 Dy(III)离子可能通过猝灭(荧光)作为 TA 的传感探针。荧光传感器在 0.02 至 25μM 的宽线性浓度范围内表现良好,检测限(LOD)为 0.0053μM。其次,我们研究了 TA 在 Dy(III)-MOF 修饰的丝网印刷碳电极(SPCE)上的循环伏安行为。Dy(III)-MOF/SPCE 在+0.22V 处表现出一个阳极峰信号,电流比对照电极表面强五倍。在优化的传感参数下,Dy(III)-MOF/SPCE 在 0.01 至 200μM 的宽线性浓度范围内具有检测限为 0.0023μM(S/N=3)。对酒精和果汁饮料中的实际实用样品进行了定量分析,回收率高达 98.13-99.53%,F 检验和 t 检验证实了高可靠性(置信水平<95%(n=3))。最后,我们通过荧光法验证了电化学方法的实用性,相对标准偏差(RSD)为 0.18-0.46±0.17%(n=3)。该设计的探针已被证明是饮料样品中 TA 准确分析的关键候选物,可确保食品质量。