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用于预测顺式和反式烯烃异构体以及烷烃色谱保留的半经验拓扑方法。

Semi-empirical topological method for the prediction of the chromatographic retention of cis- and trans-alkene isomers and alkanes.

作者信息

Heinzen V E, Soares M F, Yunes R A

机构信息

Departamento de Química, Universidade Federal de Santa Catarina, Florianópolis, S.C., Brazil.

出版信息

J Chromatogr A. 1999 Jul 23;849(2):495-506. doi: 10.1016/s0021-9673(99)00530-0.

Abstract

A new index is proposed for the prediction of the chromatographic retention of the cis- and trans-n-alkene isomers and alkanes. This index is based on the hypothesis that the chromatographic retention of the molecule is due to the interaction of each carbon atom with the stationary phase, and consequently the index is reduced by its neighbours' steric effects. The topological values are obtained by a numerical approximation considering the general behaviour of the chromatographic retention of the compounds. The simple linear regressions between the chromatographic retention and the index proposed for all branched alkanes and also isomers of the studied straight-chain C5 and C14 alkenes (1-ene, cis- and trans-2-, 3-, 4-, 5-, 6- and 7-enes) is very good (the correlation coefficient is r = 0.9999), and the elution sequence is correct for most of them. The models have a high predictive ability, as established by cross-validation values (r2cv). Thus, this new method, different from those already existent, can be used as complementary tool for the elucidation of the molecular structure, or prediction of the chromatographic retention of the cis- and trans-alkene isomers and branched alkanes. It could be extended with success, in the future, to the other types of compounds.

摘要

提出了一种新的指标,用于预测顺式和反式正构烯烃异构体以及烷烃的色谱保留情况。该指标基于这样一种假设,即分子的色谱保留是由于每个碳原子与固定相之间的相互作用,因此该指标会因相邻原子的空间效应而降低。通过考虑化合物色谱保留的一般行为进行数值近似来获得拓扑值。对于所有支链烷烃以及所研究的直链C5和C14烯烃(1-烯、顺式和反式-2-、3-、4-、5-、6-和7-烯)的异构体,所提出的指标与色谱保留之间的简单线性回归非常良好(相关系数r = 0.9999),并且它们中的大多数洗脱顺序是正确的。如通过交叉验证值(r2cv)所确定的那样,这些模型具有很高的预测能力。因此,这种与现有方法不同的新方法可作为一种辅助工具,用于阐明分子结构,或预测顺式和反式烯烃异构体以及支链烷烃的色谱保留情况。未来,它有望成功扩展到其他类型的化合物。

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