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A second-order advantage achieved with the aid of gold nanoparticle catalytic activity. Determination of nitrophenol isomers in binary mixtures

机译:借助金纳米颗粒的催化活性获得了二级优势。二元混合物中硝基苯酚异构体的测定

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A novel, simple and rapid spectrophotometric method for the determination of nitrophenol (NP) isomer mixtures based on the catalytic activity of gold nanoparticles is described. Gold nanoparticle (a??13 nm) solution was used to catalyze the reduction of NP isomers to aminophenols with an excess amount of NaBH4. The second-order data were obtained by spectrophotometrically monitoring the reduction process of NP isomers. So, multivariate curve resolution optimized by alternative least squares (MCR-ALS) was used to analyze such data. MCR-ALS, an appropriate second-order method, can exploit the so-called a€?second order advantagea€? (the ability to determine in the presence of uncalibrated interference). With the use of this multivariate curve resolution method, we applied a single calibration sample, instead of a large number of calibration samples. The results obtained by MCR-ALS analysis were in good agreement with the true concentration of NP isomers. Furthermore, the ranges of all possible concentrations of NP isomers were obtained by calculating all feasible solutions. These concentrations are all amounts which may be achieved by applying different initial estimates in MCR-ALS. The proposed procedure was further applied to determine the NP isomers spiked in dam water samples, and it showed good promise for quantitative detection of NP isomers.
机译:描述了一种基于金纳米颗粒的催化活性测定硝基酚(NP)异构体混合物的新颖,简单,快速的分光光度法。金纳米粒子(α13 13nm)溶液用于催化NP异构体与过量的NaBH 4还原为氨基酚。二阶数据是通过分光光度法监测NP异构体的还原过程而获得的。因此,使用通过替代最小二乘法(MCR-ALS)优化的多变量曲线分辨率来分析此类数据。 MCR-ALS是一种合适的二阶方法,可以利用所谓的“二阶优势”。 (在存在未校准干扰的情况下进行确定的能力)。通过使用这种多变量曲线解析方法,我们应用了一个校准样品,而不是大量的校准样品。通过MCR-ALS分析获得的结果与NP异构体的真实浓度高度吻合。此外,通过计算所有可行的解决方案,获得了所有可能的NP异构体浓度范围。这些浓度都是可以通过在MCR-ALS中应用不同的初始估算值来实现的。拟议的程序进一步应用于确定大坝水样中加标的NP异构体,对于定量检测NP异构体显示出良好的前景。

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