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首页> 外文期刊>Asian Journal of Chemistry: An International Quarterly Research Journal of Chemistry >Electrochemical Behavior of Trazodone at Mercury and Glassy Carbon Electrodes and Voltammetric Methods for its Determination
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Electrochemical Behavior of Trazodone at Mercury and Glassy Carbon Electrodes and Voltammetric Methods for its Determination

机译:曲唑酮在汞和玻璃碳电极上的电化学行为及其伏安法测定

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摘要

Electrochemical oxidation and reduction characteristics of trazodone were studied on glassy carbon electrode (GCE) and hanging mercury drop electrode (HMDE), respectively. Diffusion-adsorption behavior and electrochemical parameters such as diffusion coefficient, number of electrons transferred and proton participated to its electrode mechanisms and surface coverage coefficient were calculated using the results of cyclic voltammetry and square-wave voltammetry. Quasi-reversible and adsorption controlled reduction mechanism was proposed on HMDE and oxidation with two-electron/two-proton irreversible oxidation mechanism controlled by adsorption with some diffusion contribution on GCE was proposed. Experimental parameters were optimized to develop new, accurate, rapid, selective and simple voltammetric methods for direct determination of trazodone in pharmaceutical dosage forms and spiked human serum samples without lime-consuming steps prior to drug assay. In square-wave cathodic adsorptive stripping voltammetry, limit of detection (LOD) was found as 4,32 nM. Proposed methods were successfully applied to determine the trazodone content of commercial pharmaceutical preparations and spiked human serum. The methods were found to be highly accurate and precise, having a relative standard deviation of less than 5 % for all applications.
机译:在玻璃碳电极(GCE)和悬挂式汞滴电极(HMDE)上分别研究了曲唑酮的电化学氧化和还原特性。利用循环伏安法和方波伏安法的结果计算了扩散吸附行为和电化学参数,如扩散系数,转移的电子数量和质子参与其电极机理,以及表面覆盖系数。提出了对HMDE的准可逆和吸附控制的还原机理,并提出了在吸附和控制下对GCE具有吸附作用的二电子/二质子不可逆氧化机理。优化实验参数以开发新的,准确的,快速的,选择性的和简单的伏安法,直接测定药物剂型和加标的人血清样品中的曲唑酮,而无需在测定药物之前消耗石灰。在方波阴极吸附溶出伏安法中,检测限(LOD)为4.32 nM。成功地将建议的方法用于测定商业药物制剂和加标的人血清中的曲唑酮含量。发现该方法是高度准确和精确的,在所有应用中的相对标准偏差均小于5%。

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