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Prediction of the Hydrophobic Character of Aromatic Amines by Quantum Chemistry and QSPR Methods: The Case of Aniline and Its Derivatives

DOI: 10.4236/cc.2026.144007, PP. 105-130

Keywords: Quantum Chemistry, QSPR Model, Statistical Data Analysis, Aniline

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Abstract:

This study established a relationship between the water/octanol partition coefficient (LogP) and molecular descriptors from quantum chemistry using a QSPR approach. To this end, a QSPR model based on three molecular descriptors, namely ionization energy (IE), total electronic energy (ET), and dipole moment (μ), was developed. To evaluate the quality, robustness, and predictive power of the resulting model, several statistical and validation parameters were calculated ( R 2 =0.9501 ; R adjusted 2 =0.9386 ; s = 0.2000; F = 82.5446; Q LOO 2 =0.9149 ; r m 2 ( LOO ) ˉ =0.6651 ; Δ r m 2 ( LOO )=0.0000 ; Q ext 2 =0.9825 ; r m 2 ( test ) ˉ =0.9013 ; Δ r m 2 (

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