首页> 外文期刊>Journal of Analytical Methods in Chemistry >Functionalized Fe3O4 Magnetic Nanoparticle Potentiometric Detection Strategy versus Classical Potentiometric Strategy for Determination of Chlorpheniramine Maleate and Pseudoephedrine HCl
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Functionalized Fe3O4 Magnetic Nanoparticle Potentiometric Detection Strategy versus Classical Potentiometric Strategy for Determination of Chlorpheniramine Maleate and Pseudoephedrine HCl

机译:官能化Fe3O4磁性纳米粒子电位检测策略与氯苯那三明氨酸和伪麻黄碱HCL测定的经典电位策略

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Nanosized adsorbents when used in potentiometric methods of analysis usually show better performance rather than the traditional potentiometric approach; this is attributed to the high specific surface area of the nanomaterial used in addition to the lack of internal diffusion resistance, thus improving their adsorption capacity. In the presented work, a rapid and sensitive potentiometric determination of chlorpheniramine maleate (CPM) and pseudoephedrine hydrochloride (PSE) in pure form, in pharmaceutical preparation, and in biological fluid was developed based on functionalized magnetic nanoparticles (Fe3O4). This strategy was compared with the classical potentiometric strategy. Three types of sensors were constructed using phosphotungstic acid (PTA), β-cyclodextrin (β-CD), and β-cyclodextrin-conjugated Fe3O4 magnetic nanoparticles for the potentiometric determination of each of CPM and PSE. The prepared sensors were characterized in regards to their composition, life duration, working pH range, and response time. The sensors have demonstrated promising selectivity to CPM and PSE in the presence of pharmaceutical formulation excipients, plasma matrix, and a diversity of both organic and inorganic interfering materials. The developed sensors have displayed good responses. Statistical comparison of the achieved results with a reported method has revealed no significant difference regarding both accuracy and precision.
机译:纳米型吸附剂用于电位分析方法,通常显示出更好的性能而不是传统的电位方法;这归因于除了缺乏内部扩散抗性之外使用的纳米材料的高比表面积,从而提高其吸附能力。在所施加的作品中,基于官能化磁性纳米粒子(Fe3O4),开发了在官能化磁性纳米粒子(Fe3O4)中进行快速和敏感的电位测定纯形式,在药物制剂中,在药物制剂中的纯形式和生物液中的盐酸伪盐酸盐(PSE)。将该策略与经典电位策略进行比较。使用磷钨酸(PTA),β-环糊精(β-CD)和β-环糊精 - 缀合的Fe3O4磁性纳米颗粒构建三种传感器,用于电位测定每种CPM和PSE。在其组成,寿命期,工作pH范围和响应时间方面表征了制备的传感器。在药物配方赋形剂,血浆基质和有机和无机干扰材料的不同,传感器对CPM和PSE具有对CPM和PSE的有希望的选择性。发达的传感器显示出良好的反应。通过报告的方法实现达到的结果的统计比较揭示了准确性和精度的显着差异。

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