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基于热力学数据的气相色谱保留时间的定量结构-保留关系建模。

Quantitative structure-retention relationship modeling of gas chromatographic retention times based on thermodynamic data.

机构信息

Department of Chemistry, University of Alberta, Edmonton, AB T6G 2G2, Canada; Department of Medicinal Chemistry, School of Pharmacy, Guilan University of Medical Sciences, Rasht, Iran.

Department of Chemistry, University of Alberta, Edmonton, AB T6G 2G2, Canada.

出版信息

J Chromatogr A. 2014 Sep 5;1358:225-31. doi: 10.1016/j.chroma.2014.06.071. Epub 2014 Jun 30.

Abstract

Thermodynamic parameters of ΔH(T0), ΔS(T0), and ΔCP for 156 compounds comprising alkanes, alkyl halides and alcohols were determined for a 5% phenyl 95% methyl stationary phase. The determination of thermodynamic parameters relies on a Nelder-Mead simplex optimization to rapidly obtain the parameters. Two methodologies of external and leave one out cross validations were applied to assess the robustness of the estimations of thermodynamic parameters. The largest absolute errors in predicted retention time across all temperature ramps and all compounds were 1.5 and 0.3s for external and internal sets, respectively. The possibility of an in silico extension of the thermodynamic library was tested using a quantitative structure-retention relationship (QSRR) methodology. The estimated thermodynamic parameters were utilized to develop QSRR models. Individual partial least squares (PLS) models were developed for each of the three classes of the molecules. R(2) values for the test sets of all models across all temperature ramps were larger than 0.99 and the average of relative errors in retention time predictions of the test sets for alkanes, alcohols, and alkyl halides were 1.8%, 2.4%, and 2.5%, respectively.

摘要

对于包含烷烃、烷基卤化物和醇的 156 种化合物,在 5%苯基 95%甲基固定相上测定了ΔH(T0)、ΔS(T0)和ΔCP 的热力学参数。热力学参数的确定依赖于 Nelder-Mead 单纯形优化,以快速获得参数。采用外部和留一法交叉验证两种方法来评估热力学参数估计的稳健性。在所有温度斜坡和所有化合物中,预测保留时间的最大绝对误差分别为外部和内部集的 1.5 和 0.3s。使用定量结构-保留关系 (QSRR) 方法测试了热力学库在计算上的扩展可能性。使用估算的热力学参数开发了 QSRR 模型。为分子的三个类别分别开发了个别偏最小二乘 (PLS) 模型。所有模型的测试集在所有温度斜坡上的 R(2) 值均大于 0.99,烷烃、醇和烷基卤化物测试集的保留时间预测的平均相对误差分别为 1.8%、2.4%和 2.5%。

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