Electroanalytical Analysis of Guaifenesin from Pharmaceuticals on Boron Doped Diamond Electrode

F. Ağın, Gökçe Öztürk, D. Kul
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Abstract

The expectorant drug guaifenesin (GFN) electroanalytical analysis was performed on boron doped diamond electrode (BDDE) by cyclic voltammetry (CV), differential pulse voltammetry (DPV) and square wave voltammetry (SWV) methods. The results of CV studies indicate that the reaction mechanism of GFN in the oxidation direction on the BDDE is irreversible and diffusion controlled. The linearity ranges are 0.400 ˗ 100 µM and 0.800 ˗ 100 µM for DPV and SWV methods, respectively. Limit of detection (LOD) values are obtained as 1.47 nM for DPV and 2.92 nM for SWV. Quantitative analysis of GFN from the pharmaceuticals was performed with fully validated DPV and SWV methods without any pre-separation. The sensitive methods with good recovery, high precision and accuracy have been developed for the electroanalytical analysis of GFN.
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硼掺杂金刚石电极上药物中愈创甘油醚的电分析
采用循环伏安法(CV)、差分脉冲伏安法(DPV)和方波伏安法(SWV)在硼掺杂金刚石电极(BDDE)上对化痰药物愈伤甘油醚(GFN)进行电分析。CV研究结果表明,GFN在BDDE上的氧化方向反应机理是不可逆的、扩散可控的。DPV法和SWV法的线性范围分别为0.400和0.800 - 100µM。DPV和SWV的检出限分别为1.47 nM和2.92 nM。采用经过充分验证的DPV和SWV方法对药物中的GFN进行定量分析,无需任何预分离。开发了回收率好、精密度高、准确度高的GFN电分析灵敏方法。
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