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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Smartphone application for captopril determination in dosage forms and synthetic urine employing digital imaging
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Smartphone application for captopril determination in dosage forms and synthetic urine employing digital imaging

机译:智能手机应用于消化普利测定的剂型和综合尿液采用数字成像

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摘要

A simple, accurate, and low-cost analytical procedure for captopril determination through digital imaging is presented. The method relies on the spot test reaction between captopril and palladium (II) chloride, which produces a yellow and water-soluble complex with maximum absorption at 380 nm. A smartphone camera and a portable apparatus built for internal lighting control were put together to acquire digital images of reaction mixtures. Digital image processing through the RGB approach was used to establish a quantitative relationship between color intensity and captopril concentration. Under the most suitable operational and experimental conditions, an analytical curve was built monitoring the Blue channel within the concentration range of 3.12 x 10(-5) to 1.21 x 10(-3) mol L-1. Limits of detection and quantification were equal to 8.06 x 10(-6) and 2.69 x 10(-5) mol L-1, respectively. Recovery percentage in synthetic urine samples ranged from 97.1% to 102.9%. Results were compared with a reference method and no significant differences were detected at the 95% confidence level. The developed method presents budgetary and environmental advantages concerning the use of cheap and easy-handled devices and the consumption of very low volumes of reagent (800 mu L per determination). It can be a useful analytical tool for laboratories with limited financial resources while abiding by green chemistry principles.
机译:提出了一种通过数字成像的简单,准确和低成本的分析程序,用于通过数字成像进行卡托普利确定。该方法依赖于卡托普利和钯(II)氯化物之间的斑点试验反应,其产生黄色和水溶性复合物,其最大吸收在380nm处。智能手机相机和用于内部照明控制的便携式设备被组合在一起,以获取反应混合物的数字图像。通过RGB方法的数字图像处理用于建立颜色强度和卡托普利浓度之间的定量关系。在最合适的操作和实验条件下,在3.12×10( - 5)至1.21×10(-3)摩尔L-1的浓度范围内监测蓝色通道的构建分析曲线。检测和定量的限制分别等于8.06×10(-6)和2.69×10(-5)摩尔L-1。合成尿液样品中的恢复百分比范围为97.1%至102.9%。结果与参考方法进行比较,在95%的置信水平下没有检测到显着差异。开发方法提出了使用便宜且易于处理的装置的预算和环境优势以及非常低的试剂的消耗(每种测定800μl)。它可以是有限的财务资源的实验室的有用分析工具,同时遵守绿色化学原则。

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