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首页> 外文期刊>Chemometrics and Intelligent Laboratory Systems >Multidimensional voltammetry: Four-way multivariate calibration with third-order differential pulse voltammetric data for multi-analyte quantification in the presence of uncalibrated interferences
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Multidimensional voltammetry: Four-way multivariate calibration with third-order differential pulse voltammetric data for multi-analyte quantification in the presence of uncalibrated interferences

机译:多维伏安法:在存在未校正干扰的情况下,使用三阶差分脉冲伏安法数据进行四向多元校正,以进行多分析物定量

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摘要

A four-way multivariate calibration approach based on the combination of differential pulse voltammetric (DPV) data and four-way algorithms is described for the first time. To achieve this goal, the DPV response of each sample was recorded thirty-six times. Six current-potential matrices were recorded at six different pulse durations. Each matrix consists of six vectors which have been recorded at six different pulse heights. The three-way data array obtained for the calibration set and for each of the test samples were joined into a single four-way data array. The recorded four-way data array was nonlinear, thus, the non-linearities were tackled by potential shift correction using correlation-optimized warping (COW) algorithm and subsequently was analyzed with unfolded-partial least squares/residual trilinearization (U-PLS/RTL) and multi-way-PLS/RTL (N-PLS/RTL) as third-order multivariate calibration algorithms. A comprehensive and systematic strategy for comparing the performance of the two algorithms was presented in this work, in particular with a view of practical applications. This comparison was developed to identify which algorithm offers the best predictions for the simultaneous determination of levodopa (ID), carbidopa (CD), methyldopa (MD), acetaminophen (AC), tramadol (TRA), lidocaine (LC), tolperisone (TOP), ofloxacin (OF), levofloxacin (LOF), and norfloxacin (NOF) in the presence of benserazide (BA), dopamine (DP), and ciprofloxacin (COF) as uncalibrated interferences using a multi-walled carbon nanotubes modified glassy carbon electrode (MWCNTs/GCE). This study demonstrated the more superiority of U-PLS/RTL to resolve the complex systems. The results of applying U-PLS/RTL for the simultaneous determination of the studied analytes in human serum samples as experimental cases were also encouraging. (C) 2015 Elsevier B.V. All rights reserved.
机译:首次介绍了基于差分脉冲伏安(DPV)数据和四向算法的组合的四向多元校准方法。为了达到这个目标,每个样品的DPV响应被记录了36次。在六个不同的脉冲持续时间内记录了六个电流势矩阵。每个矩阵由六个矢量组成,这些矢量已在六个不同的脉冲高度处记录。将针对校准集和每个测试样品获得的三向数据阵列合并为单个四向数据阵列。记录的四向数据数组是非线性的,因此,使用相关优化翘曲(COW)算法通过电位偏移校正来解决非线性问题,然后使用展开式最小二乘/残差三线性化(U-PLS / RTL)进行分析)和多路PLS / RTL(N-PLS / RTL)作为三阶多元标定算法。这项工作提出了一种用于比较两种算法性能的全面而系统的策略,尤其是从实际应用的角度出发。进行此比较是为了确定哪种算法可同时测定左旋多巴(ID),卡比多巴(CD),甲基多巴(MD),对乙酰氨基酚(AC),曲马多(TRA),利多卡因(LC),托哌酮(TOP)提供最佳预测),氧氟沙星(OF),左氧氟沙星(LOF)和诺氟沙星(NOF)在存在苄丝肼(BA),多巴胺(DP)和环丙沙星(COF)的情况下使用多壁碳纳米管修饰的玻碳电极作为未校准干扰物(MWCNTs / GCE)。这项研究表明,U-PLS / RTL在解决复杂系统方面更具优势。应用U-PLS / RTL同时测定人血清样品中研究的分析物的结果也令人鼓舞。 (C)2015 Elsevier B.V.保留所有权利。

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