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首页> 外文期刊>Chemistry Select >Selective Ion-pair Potentiometric Sensor for the Determination of Ondansetron Hydrochloride in Different Matrixes
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Selective Ion-pair Potentiometric Sensor for the Determination of Ondansetron Hydrochloride in Different Matrixes

机译:Selective Ion-pair Potentiometric Sensor for the Determination of Ondansetron Hydrochloride in Different Matrixes

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摘要

A facile, novel, and, sensitive potentiometric sensor has been developed to quantitatively determine ondansetron hydrochloride in bulk and pharmaceutical dosage forms. The sensor comprised an ion-pair between ondansetron hydrochloride and ammonium reineckate reagent, as an electrochemically active substance, on a polyvinyl chloride (PVC) matrix. Synthesis optimization was carried out by firstly altering the proportion of the ion-pair, PVC, and the plasticizer and subsequently, many plasticizer types have been investigated to realize the best performance. The optimum electrode consisted of 48.5% polyvinyl chloride, 48.5% dibutyl phthalate, and 3% ionic pair complex and has shown a respectful Nernstian relationship within a linear range of (5.06 ×10~(-6)-2592.92× 10~(-6) M) and a slope of 57.277 mV×decade~(-1) in response to the drug. The electrode worked perfectly in a pH range of (1.9-6.1) where the analyte kept dissolved. Interestingly, the electrode demonstrated a fast response time of 30 sec, a lower limit of detection of 4.83× 10~(-6) M, and an electrode lifetime of up to 30 days. The prepared electrode was applied successfully to determine the drug in its pharmaceutical dosage forms and the method validity was established. Hence, the electrode might be applied easily for the routine analysis of ondansetron hydrochloride in both scientific labs and drug industry.
机译:肤浅的,小说,敏感电位传感器已经发展到定量确定联合盐酸散装制药剂型。之间的离子对联合盐酸reineckate铵试剂,作为一个电化学活性物质,聚氯乙烯(PVC)矩阵。优化是由首先改变离子对的比例、PVC,塑化剂,随后,许多增塑剂实现最好的类型进行了调查表演二丁酯48.5%聚氯乙烯,48.5%邻苯二甲酸酯,3%离子对复杂表现出尊重Nernstian关系内的线性范围(5.06×10 ~(6)-2592.92×10 ~ (6)米)和斜率为57.277 mV×10 ~ (- 1)反应的药物。完美的pH值范围(1.9 - -6.1)分析物溶解。电极表现出快速响应时间为30秒,降低检测极限为4.83×10 ~ (6)M,电极寿命高达30天。准备的电极已经成功地应用确定药物在制药剂型和方法有效性建立。容易申请的常规分析联合盐酸在科学实验室药品行业。

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  • 来源
    《Chemistry Select》 |2023年第16期|共8页
  • 作者单位

    Department of Chemistry, Faculty of Science, Al-Baath University, Homs, Syria;

    Department of Pharmaceutical Chemistry and Drug Control, Faculty of Pharmacy, Wadi International University, Homs, Syria;

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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 化学;
  • 关键词

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