Grabarczyk Malgorzata, Fialek Marzena
Department of Analytical Chemistry, Institute of Chemical Sciences, Faculty of Chemistry, Maria Curie-Sklodowska University, 20-031 Lublin, Poland.
Molecules. 2024 Apr 2;29(7):1583. doi: 10.3390/molecules29071583.
The current research is an attempt to analyze on-site selenium(IV) ions in environmental water samples using an eco-friendly miniaturized sensor developed by deposition of a very thin amount of metallic bismuth in a solid Bi electrode tightly closed in miniaturized housing. Numerous experimental variables are optimized, including the composition of the supporting electrolyte and its pH, as well as activation and accumulation conditions. Under optimized measurement conditions, the method shows high sensitivity, permitting a very low limit of detection equal to 7 × 10 mol L to be achieved in a short accumulation time of 50 s. The performance of this microsensor was investigated against numerous interference factors and its good anti-interference capability was demonstrated. A series of voltammetric experiments by differential pulse cathodic stripping voltammetry (DPCSV) were carried out and they proved that the miniaturized sensor is characterized by very good accuracy and precision as well as long-term stability. The solid bismuth microelectrode displays a good voltammetric response in the analysis of diverse samples with a complex matrix and demonstrates a good recovery rate.
当前的研究旨在使用一种环保型微型传感器分析环境水样中的现场硒(IV)离子,该传感器是通过在紧密封装在微型外壳中的固体铋电极上沉积极少量金属铋而开发的。优化了许多实验变量,包括支持电解质的组成及其pH值,以及活化和富集条件。在优化的测量条件下,该方法显示出高灵敏度,在50秒的短富集时间内即可实现低至7×10⁻⁹ mol/L的极低检测限。针对多种干扰因素研究了该微传感器的性能,并证明了其良好的抗干扰能力。通过差分脉冲阴极溶出伏安法(DPCSV)进行了一系列伏安实验,结果证明该微型传感器具有非常好的准确性、精密度以及长期稳定性。固体铋微电极在分析具有复杂基质的各种样品时显示出良好的伏安响应,并具有良好的回收率。