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Rank annihilation factor analysis using mean centering of ratio spectra for kinetic-spectrophotometric analysis of unknown samples

机译:使用比率谱的平均居中进行秩歼灭因子分析,用于未知样品的动力学分光光度分析

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In this work rank annihilation factor analysis (RAFA) using mean centering of ratio spectra was used to analyze the kinetic-spectrophotometric data. Annihilation of the contribution of one chemical component from the original data matrix is a general method in RAFA. However, sometimes, RAFA is not suitable for studying rank-deficient data such as kinetic-spectrophotometric measurements which involves closure rank deficiency. On the other hand, in order to apply RAFA for the determination of an analyte in an unknown sample, a standard two-way matrix of the analyte of interest with rank-one should generally be available. This is not usually attainable for kinetic-spectrophotometric monitoring of complexation reactions when both reactant and product are absorbing species. In these systems, the exact contribution of absorbing reagent should be eliminated from both unknown sample and standard calibration data matrix of analyte otherwise ordinary RAFA fails to give correct concentration of analyte of interest. Mean centering of ratio spectra using the spectrum of absorbing reagent as divisor can be used to eliminate the correct contribution of reagent for both sample data and standard calibration data of analyte. The obtained mean centering of ratio spectra matrix of sample and that of analyte of interested are full-rank and rank-one, respectively. Therefore the system can be analyzed by RAFA. The proposed method was investigated with simulated data at the first stage. The method was then applied in the analysis of experimental kinetic-spectrophotometric data of complexation reactions of Co(II), and Ni(II) with PAN in order to do multi-component determination of these ions in various real samples.
机译:在这项工作中,使用比率光谱的平均居中的等级歼灭因子分析(RAFA)用于分析动力学分光光度数据。从原始数据矩阵中消除一种化学成分的贡献是RAFA中的一种通用方法。但是,有时RAFA不适合研究等级不足的数据,例如涉及封闭等级不足的动力学分光光度法测量。另一方面,为了将RAFA应用于未知样品中分析物的测定,通常应该使用具有第1级的目标分析物的标准双向矩阵。当反应物和产物都是吸收性物质时,这通常无法通过动力学分光光度法监测络合反应。在这些系统中,应从未知样品和分析物的标准校准数据矩阵中消除吸收剂的确切作用,否则普通RAFA无法提供正确浓度的目标分析物。使用吸收剂光谱作为除数的比率光谱的平均居中可用于消除试剂对样品数据和分析物的标准校准数据的正确贡献。获得的样品和感兴趣的分析物的比率谱矩阵的平均居中分别为满秩和秩一。因此,可以通过RAFA对系统进行分析。在第一阶段用模拟数据研究了该方法。然后将该方法用于分析Co(II)和Ni(II)与PAN的络合反应的实验动力学分光光度数据,以便对各种真实样品中的这些离子进行多组分测定。

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