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首页> 外文期刊>Journal of Electroanalytical Chemistry: An International Journal Devoted to All Aspects of Electrode Kinetics, Interfacial Structure, Properties of Electrolytes, Colloid and Biological Electrochemistry >Sensitive voltammetric determination of hydroxyzine and its main metabolite cetirizine and identification of oxidation products by nuclear magnetic resonance spectroscopy
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Sensitive voltammetric determination of hydroxyzine and its main metabolite cetirizine and identification of oxidation products by nuclear magnetic resonance spectroscopy

机译:核磁共振光谱法测定羟基锌及其主要代谢产物的氧化产物鉴定及鉴定伏安

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摘要

AbstractThe electrochemical detection and electrooxidation path of the first-generation antihistamine receptor hydroxyzine (HDZ) and its main metabolite cetirizine (CTZ) are addressed in this research. A carbon black-modified electrode to explore the electrochemical responsivity and electroanalytical detection of HDZ and CTZ was designed. Compared to the bare electrode, the irreversible anodic responses observed for HDZ and CTZ were considerably improved on the proposed carbon black-modified electrode, including twenty times enhancement of the anodic peak currents and the shifting of anodic peak potentials to less positive potentials. In order to identify the electrooxidation products resulting from the previously verified irreversible redox processes, cyclic voltammetric studies and potentiostatic electrolysis assays followed by products identification by nuclear magnetic resonance (NMR) spectroscopy were carried out. From the combination of electrochemistry and NMR spectroscopy data it was possible to propose electrooxidation reaction mechanisms for HDZ and CTZ molecules. By applying square-wave adsorptive anodic stripping voltammetry (SWAdASV) under optimized experimental conditions, the obtained analytical curves for HDZ and CTZ were linear from 2.99×10?7to 9.81×10?6molL?1and from 4.97×10?7to 1.08×10?5molL?1, with limits of detection of 1.00×10?7molL?1and 4.00×10?7molL?1, respectively. Finall
机译:<![cdata [ 抽象 第一代抗组胺氨基受体羟基嗪(HDZ)的电化学检测和电氧化路径及其主要代谢物依齐嗪( CTZ)在本研究中得到解决。设计了一种探索HDZ和CTZ电化学响应性和电解质检测的炭黑改性电极。与裸电极相比,在所提出的炭黑改性电极上观察到对HDZ和CTZ观察的不可逆阳极反应,包括增强阳极峰值电流的二十倍,并且阳极峰值电位的移位较少的正电位。为了鉴定先前验证的不可逆氧化还原过程所产生的电氧化产物,进行循环伏安研究和稳态电解测定,然后通过核磁共振(NMR)光谱法鉴定。根据电化学和NMR光谱数据的组合,可以提出用于HDZ和CTZ分子的电氧化反应机制。通过在优化的实验条件下施加方波吸附阳极剥离伏安法(SWADASV),HDZ和CTZ的获得的分析曲线从2.99×10 ?7 到9.81×10 ?6 moll ?1 和4.97×10 ?7 到1.08×10 ?5 moll ?1 ,检测限制1.00×10 ?7 moll ?1 4.00×10 ?7 moll ?1 。 Finall.

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