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使用硼掺杂金刚石电极的丝网印刷传感器对药物愈创甘油醚在药物和生物样品中的伏安法和流动安培法测定。

Voltammetric and flow amperometric determination of drug guaifenesin in pharmaceutical and biological samples using screen-printed sensor with boron doped diamond electrode.

机构信息

University of Pardubice, Faculty of Chemical Technology, Institute of Environmental and Chemical Engineering, Studentská 573, 532 10, Pardubice, Czech Republic.

University of Pardubice, Faculty of Chemical Technology, Institute of Environmental and Chemical Engineering, Studentská 573, 532 10, Pardubice, Czech Republic.

出版信息

Talanta. 2025 Jan 1;281:126809. doi: 10.1016/j.talanta.2024.126809. Epub 2024 Sep 7.

Abstract

New voltammetric and flow amperometric methods for the determination of guaifenesin (GFE) using a perspective screen-printed sensor (SPE) with boron-doped diamond electrode (BDDE) were developed. The electrochemical oxidation of GFE was studied on the surface of the oxygen-terminated BDDE of the sensor. The GFE provided two irreversible anodic signals at a potential of 1.0 and 1.1 V (vs. Ag|AgCl|KCl sat.) in Britton-Robinson buffer (pH 2), which was chosen as the supporting electrolyte for all measurements. First, a voltammetric method based on differential pulse voltammetry was developed and a low detection limit (LOD = 41 nmol L), a wide linear dynamic range (LDR = 0.1-155 μmol L), and a good recovery in the analysis of model and pharmaceutical samples (RSD <3.0 %) were obtained. In addition, this sensor demonstrated excellent sensitivity and reproducibility in the analysis of biological samples (RSD <3.2 %), where the analysis took place in a drop of serum (50 μL) without pretreatment and additional electrolyte. Subsequently, SP/BDDE was incorporated into a flow-through 3D printed electrochemical cell and a flow injection analysis method with electrochemical detection (FIA-ED) was developed, resulting in excellent analytical parameters (LOD = 86 nmol L, LDR = 0.1-50 μmol L). Moreover, the mechanism of electrochemical oxidation of GFE was proposed based on calculations of HOMO spatial distribution and spectroelectrochemical measurements focused on IR identification of intermediates and products.

摘要

采用硼掺杂金刚石电极(BDDE)修饰的玻碳电极(SPE),建立了两种新的伏安法和流动安培法,用于测定愈创甘油醚(GFE)。在传感器的氧终止 BDDE 表面上研究了 GFE 的电化学氧化。在 Britton-Robinson 缓冲液(pH 2)中,GFE 在 1.0 和 1.1 V(相对于 Ag|AgCl|KCl sat.)处提供了两个不可逆的阳极信号,该缓冲液被选为所有测量的支持电解质。首先,开发了一种基于差分脉冲伏安法的伏安法,该方法具有较低的检测限(LOD=41 nmol L)、较宽的线性动态范围(LDR=0.1-155 μmol L)和对模型和药物样品分析的良好回收率(RSD <3.0 %)。此外,该传感器在分析生物样品(RSD <3.2 %)时表现出出色的灵敏度和重现性,分析在无需预处理和额外电解质的情况下在 50 μL 血清滴中进行。随后,将 SP/BDDE 装入 3D 打印流通池,并开发了带有电化学检测的流动注射分析方法(FIA-ED),得到了出色的分析参数(LOD=86 nmol L,LDR=0.1-50 μmol L)。此外,基于 HOMO 空间分布的计算和针对中间体和产物的 IR 鉴定的光谱电化学测量,提出了 GFE 电化学氧化的机理。

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