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Journal of Colloid and Interface Science|March 1, 1997
Prediction of Critical Micelle Concentration Using a Quantitative Structure-Property Relationship ApproachHuibers, Lobanov, Katritzky, et al.Journal of Chemical Information and Computer Sciences|June 21, 2001
Interpretation of quantitative structure-property and -activity relationshipsA R Katritzky, R Petrukhin, D Tatham, et al.Current Topics in Medicinal Chemistry|December 10, 2002
The present utility and future potential for medicinal chemistry of QSAR/QSPR with whole molecule descriptorsAlan R Katritzky, Dan C Fara, Ruslan O Petrukhin, et al.Journal of Chemical Information and Computer Sciences|September 23, 2003
A comprehensive docking study on the selectivity of binding of aromatic compounds to proteinsCsaba Hetényi, Uko Maran, Mati KarelsonThe Journal of Organic Chemistry|March 8, 1996
Aromaticity as a Quantitative Concept. 6. Aromaticity Variation with Molecular EnvironmentAlan R. Katritzky, Mati Karelson, Adam P. WellsBioorganic & Medicinal Chemistry|May 15, 2004
QSPR of 3-aryloxazolidin-2-one antibacterialsAlan R Katritzky, Dan C Fara, Mati KarelsonJournal of Molecular Modeling|June 16, 2007
QSPR modeling of hyperpolarizabilitiesAlan R Katritzky, Liliana Pacureanu, Dimitar Dobchev, et al.Journal of Chemical Information and Computer Sciences|December 26, 2001
QSPR analysis of flash pointsA R Katritzky, R Petrukhin, R Jain, et al.Bioorganic & Medicinal Chemistry Letters|November 7, 2002
Six-membered cyclic ureas as HIV-1 protease inhibitors: a QSAR study based on CODESSA PRO approach. Quantitative structure-activity relationshipsAlan R Katritzky, Alexander Oliferenko, Andre Lomaka, et al.Journal of Chemical Information and Modeling|May 15, 2007
QSPR study of critical micelle concentration of anionic surfactants using computational molecular descriptorsAlan R Katritzky, Liliana Pacureanu, Dimitar Dobchev, et al.Pageof 224