循环伏安法在抗原生动物中的铋重金属电化学研究

ahmad alkawaldeh
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引用次数: 0

摘要

铋氧化物是燃料电池系统中众所周知的电催化剂;它们通常用作氧化低分子量醇的阳极材料。建立了利用二氧化硅和二氧化锰作为催化剂进行药物分析的方法,用于药物剂型中重金属抗菌剂的测定。建立了用氧化铋氧化双铂电极伏安法测定重金属的方法。在7.04*10-7- 1*10-3 M的重金属浓度范围内,这两种组分在双相化电极表面被氧化,电流的发展与它们的浓度成线性正比。两组分的氧化反应是pH依赖性的,其中使用的缓冲液为briton - robinson, pH = 7.00时获得最大的峰电流和最大的峰分离。标定曲线的回归因子为0.9812。对分析方法进行验证,其检出限(LOD)和定量限(LOQ)分别为1.44 × 10-4 M、4.36 × 10-4 M和1.27 × 10-4 M、3.84 × 10-4 M,重金属的回收率均为77%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electrochemical study of Bismuth heavy metals using the cyclic voltammetry method in anti-protozoal
Bismuth oxides are well-known electro-catalysts in fuel cells systems; they are usually used as anodic materials for the oxidation of low molecular weight alcohols. The utilization of BiO2 and MnO2 as catalysts in the pharmaceutical analysis is analytical method for the determination of heavy metal antibacterial agents in Pharmaceutical Dosage form is developed. The method is based on the voltammetric determination of heavy metal using Bidified platinum electrode by Bismuth oxide. The two components are oxidized at the Bidified electrode surface with the development of current that is linearly proportional to their concentrations in the range of 7.04*10-7- 1*10-3 M heavy metal. The oxidation reaction of the two components is pH-dependent, in which the buffer used is Britton-Robinson at pH = 7.00 where maximum peak current and maximum peak separation is obtained. The regression factors obtained from the calibration curves are 0.9812. The method of analysis was validated, where the limit of detection (LOD) and the limit of quantitation (LOQ) were calculated to be 1.44*10-4 M, 4.36*10-4 M and 1.27*10-4 M, 3.84*10-4 M respectively, the percentage recovery of both components was also calculated to 77 % for heavy metal.
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