Quantitative Structure-Retention Relationships for Polycyclic Aromatic Hydrocarbons and their Oligoalkynyl-Substituted Derivatives.
Gaël RouilléCornelia JägerFriedrich HuiskenThomas HenningRegina CzerwonkaGabriele TheumerCarsten BörgerIngmar BauerHans-Joachim KnölkerPublished in: ChemistryOpen (2017)
Reversed-phase high-performance liquid chromatography (RP-HPLC) has been carried out for a series of unsubstituted polycyclic aromatic hydrocarbons (PAHs) and the corresponding ethynyl, 1,3-butadiynyl, and 1,3,5-hexatriynyl derivatives. Theoretical values of the isotropic polarizability and several polarity descriptors have been computed for each compound by using semiempirical models and density functional theory (DFT), with the aim of evaluating linear functions as quantitative structure-retention relationships (QSRRs). The polarity has been described by using either the permanent electric dipole moment, the subpolarity, or a topological electronic index. Three types of partial atomic charges have been used to calculate the subpolarity and a topological index. The choice of the theoretical model, of the polarity descriptor, and of the partial atomic charges is discussed and the resulting QSRRs are compared. Calculating the retention times from the polarizability and the topological electronic index (AM1, PM3, or DFT-B3LYP/6-31+G(d,p)) gives the best agreement with the experimental values.
Keyphrases
- polycyclic aromatic hydrocarbons
- density functional theory
- high performance liquid chromatography
- molecular dynamics
- tandem mass spectrometry
- simultaneous determination
- solid phase extraction
- mass spectrometry
- molecular docking
- high resolution
- ms ms
- magnetic resonance imaging
- molecular dynamics simulations
- air pollution
- structure activity relationship
- risk assessment
- computed tomography
- particulate matter