开发美白霜中的胶态银基汞传感器

Muhammad Hilmi Afthoni, Sherly Yunita, Eva Monica
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引用次数: 0

摘要

背景:汞是一种以对人体有毒而著称的有害重金属,因其具有抑制黑色素形成的能力而被应用于化妆品中。传统的汞分析依赖于耗费大量资源和时间的仪器。研究目的本研究旨在设计经济实用的汞检测传感器。方法:传感器的开发过程包括将传感器固定在纸上,与汞反应,使用扫描仪扫描结果,然后使用 ImageJ 软件量化 RGB 值。结果:通过优化试剂浓度,亚甲基蓝、AgNO3、没食子酸和抗坏血酸的比例为 0.5:7:1.5:1,结果最佳。此外,pH 值在 5 至 9 范围内的优化显示了稳定性,无需加入缓冲溶液。值得注意的是,蓝色变体在浓度优化过程中表现出更高的响应性。传感器的特性表明,其响应时间为 3 分钟,受其他物质的干扰极小,仅为 2.145%。传感器的线性范围为 0.5-250 ppm,回归方程为 y = 8.603x + 21.124,R 值为 0.994,P 值为 6.9924589548512 x 10-9,非常低。该传感器的检测限 (LOD) 为 0.206,定量限 (LOQ) 为 0.265,这表明了它的精确度。进一步评估显示,相对标准偏差 (RSD) 百分比精度为 2.017%,回收率为 96.14%。结论该传感器在室温储存条件下的稳定性超过一个月。紫外可见分光光度计与传感器之间的比较表明,两种方法之间没有明显差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of Colloidal Silver-based Mercury Sensors in Whitening Cream
Background: Mercury, a hazardous heavy metal known for its toxicity to the human body, finds application in cosmetics due to its capacity to inhibit melanin formation. Traditional mercury analysis relies on resource-intensive and time-consuming instrumentation. Objective: This study aims to devise cost-effective and practical sensors for mercury detection. Methods: The sensor development process involves immobilizing the sensor onto paper, reacting it with mercury, scanning the outcome using a scanner, and subsequently quantifying RGB values using the ImageJ software. Results: Optimization of reagent concentrations gave a ratio of methylene blue, AgNO3, gallic acid, and ascorbic acid at 0.5:7:1.5:1 generating the best results. Additionally, pH optimization within the range of 5 to 9 demonstrates stability without necessitating the inclusion of a buffer solution. Notably, the blue variant exhibits superior responsiveness during concentration optimization. Characterization of the sensor reveals a response time of 3 minutes and minimal interference of 2.145% from other substances. The sensor exhibits a linearity range of 0.5-250 ppm, regression equation y = 8.603x + 21.124, an R-value of 0.994, and an exceedingly low p-value of 6.9924589548512 x 10-9. The sensor boasts a limit of detection (LOD) of 0.206 and a limit of quantification (LOQ) of 0.265, indicative of its precision. Further assessments reveal a percent relative standard deviation (% RSD) precision of 2.017% and a recovery rate of 96.14%. Conclusion: The sensor has exhibited stability for over one month under room temperature storage conditions. A comparison between the UV-Vis spectrophotometer and the sensor signifies no significant difference between the two methods.
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