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SnS/TiO@GO 复合涂层玻碳电极的制备及其在药物制剂中对扑热息痛、色氨酸和咖啡因的同时测定。

Fabrication of SnS/TiO@GO Composite Coated Glassy Carbon Electrode for Concomitant Determination of Paracetamol, Tryptophan, and Caffeine in Pharmaceutical Formulations.

机构信息

Department of Physical Chemistry, School of Chemical Sciences , University of Madras , Guindy Campus, Chennai 600025 , Tamil Nadu , India.

出版信息

Anal Chem. 2019 May 7;91(9):5667-5676. doi: 10.1021/acs.analchem.8b05531. Epub 2019 Apr 16.

Abstract

Designing an electrochemical sensor which is simple, cheap, sensitive, fast, and accurate is inevitable, as it is important in drug quality control, point-of-care diagnosis, and other clinical studies. Sensors for simultaneous determination of paracetamol, tryptophan, and caffeine have not been reported so far, and we report an electrochemical sensor via incorporating tin sulfide (SnS) and titanium dioxide (TiO) on graphene oxide (GO) sheets (SnS/TiO@GO ternary composite) for their separate and simultaneous determination through cyclic voltammetry and differential pulse voltammetry techniques. The surface morphology and structural properties of the composite were characterized by analytical techniques. The electrochemical study of SnS/TiO@GO composite modified glassy carbon electrode (GC-SnS/TiO@GO) showed high activity toward the oxidation of paracetamol, tryptophan, and caffeine with significant decrease in overpotential due to large surface and high carrier mobility. The peak currents during separate determination of paracetamol, tryptophan, and caffeine increased linearly with the increase in concentration from 9.8 nM to 280 μM for paracetamol, from 13.3 nM to 157 μM for tryptophan, and from 16.6 nM to 333 μM for caffeine. The detection limit (3σ/ S) was 7.5, 7.8, and 4.4 nM for paracetamol, tryptophan, and caffeine, respectively. The electron transfer coefficient (α), surface coverage concentration (Γ), number of electrons transferred ( n), and diffusion coefficient ( D) were calculated and discussed. The fabricated electrode showed low detection limit, wide linear range, and excellent reproducibility, selectivity, and stability. The study was also extended to the analysis of commercial tablets, beverage and human blood serum.Therefore, the present electrode holds great promise for identification and quantification of drugs in combination.

摘要

设计一种简单、廉价、灵敏、快速且准确的电化学传感器是必不可少的,因为它在药物质量控制、即时诊断和其他临床研究中非常重要。到目前为止,还没有报道用于同时测定扑热息痛、色氨酸和咖啡因的传感器,我们报告了一种通过将硫化锡 (SnS) 和二氧化钛 (TiO) 掺入氧化石墨烯 (GO) 片上的电化学传感器 (SnS/TiO@GO 三元复合材料),通过循环伏安法和差分脉冲伏安法技术对其进行分别和同时测定。通过分析技术对复合材料的表面形貌和结构特性进行了表征。SnS/TiO@GO 复合材料修饰玻碳电极 (GC-SnS/TiO@GO) 的电化学研究表明,由于大的表面积和高载流子迁移率,其对扑热息痛、色氨酸和咖啡因的氧化具有高活性,由于过电位显著降低。在分别测定扑热息痛、色氨酸和咖啡因时,随着浓度从 9.8 nM 增加到 280 μM 对于扑热息痛,从 13.3 nM 增加到 157 μM 对于色氨酸,从 16.6 nM 增加到 333 μM 对于咖啡因,峰值电流线性增加。扑热息痛、色氨酸和咖啡因的检测限 (3σ/ S) 分别为 7.5、7.8 和 4.4 nM。计算并讨论了电子转移系数 (α)、表面覆盖浓度 (Γ)、转移电子数 ( n) 和扩散系数 ( D)。所制备的电极具有低检测限、宽线性范围、出色的重现性、选择性和稳定性。该研究还扩展到了对商业片剂、饮料和人血清的分析。因此,该电极有望用于组合药物的鉴定和定量。

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