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Original Articles

Estimation of Molecular Parameters By Hplc

Pages 2781-2804 | Published online: 19 Dec 2006

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Read on this site (8)

G. E. Granero, M. M. de Bertorello & M. C. Briñón. (1999) HYDROPHOBICITY PARAMETERS DETERMINED BY REVERSED-PHASE LIQUID CHROMATOGRAPHY FOR SOME NEW ISOXAZOLYL-NAPHTHOQUINONES. Journal of Liquid Chromatography & Related Technologies 22:2, pages 229-240.
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J. Thomas, O. Adetchessi, F. Pehourcq, P. Dallet & C. Jarry. (1997) Determination of Partition Coefficients of 2-Amino-2-Oxazolines by RP-HPLC: Application to Hydrophobicity Studies. Journal of Liquid Chromatography & Related Technologies 20:5, pages 671-679.
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J. Thomas, O. Adetchessi & C. Jarry. (1995) High Performance Liquid Chromatography of New 5-Aryloxy-Methyl-2-Amino-2-Oxazolines: A Comparative Study of Their Lipophilicity. Journal of Liquid Chromatography 18:7, pages 1429-1436.
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F. Demotes-Mainard, J. Thomas, J.J. Bosc, G. Devaux & C. Jarry. (1993) RP-HPLC of New Antidepressant 2-Amino-2-Oxazolines: A Comparative Study of Their Lipophilicity. Journal of Liquid Chromatography 16:3, pages 767-776.
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F. Demotes-mainard, C. Jarry, J. Thomas & P. Dallet. (1991) RP-HPLC Retention Data of New 2-Amino-2-Oxazolines. An Approach of Their Lipophilic Properties. Journal of Liquid Chromatography 14:4, pages 795-805.
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R.B. Taylor, N.A. Ochekpe & J. Wangboonskul. (1989) Quantitative Structure Retention Relationship Studies of Some Basic Antimalarial Compounds. Journal of Liquid Chromatography 12:9, pages 1645-1668.
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K. Valkó, I. Fellegvári, A. Katti & L. Ötvös. (1988) Correlation of HPLC Retention Data of Triazines with the Inhibition of DHFR from L1210 Cells: Development of New Chromatographic Adsorption Parameter in QSAR. Journal of Liquid Chromatography 11:4, pages 833-848.
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Klára Valkó. (1987) RP-HPLC Retention Data for Measuring Structural Similarity of Compounds for QSAR Studies. Journal of Liquid Chromatography 10:8-9, pages 1663-1686.
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Articles from other publishers (11)

S Griffin, S.Grant Wyllie & J Markham. (1999) Determination of octanol–water partition coefficient for terpenoids using reversed-phase high-performance liquid chromatography. Journal of Chromatography A 864:2, pages 221-228.
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William J. Lambert. (1993) Modeling oil—water partitioning and membrane permeation using reversed-phase chromatography. Journal of Chromatography A 656:1-2, pages 469-484.
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M. Kuchař, E. Kraus & M. Jelínková. (1991) Influence of mobile phase composition on evaluation of lipophilicity by partition chromatography. Journal of Chromatography A 557, pages 399-411.
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Zurisaddai Hernandez-Gallegos & Pedro A. Lehmann F.. (1990) Partition Coefficients of Three New Anticonvulsants. Journal of Pharmaceutical Sciences 79:11, pages 1032-1033.
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James J. Michels & John G. Dorsey. (1990) Estimation of the reversed-phase liquid chromatographic lipophilicity parameter log k′w using ET-30 solvatochromism. Journal of Chromatography A 499, pages 435-451.
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Balkrishna R. Gandhe, Purnanand, Rameshwar Prasad, Rajinder K. Danikhel, Shankarrao K. Shinde, Rajendra K. Srivastava, Balwant S. Batra & Karumuru M. Rao. (1990) Use of gas chromatographic retention indices for quantitative structure activity relationship studies of dialkyl phenyl phosphates. Pesticide Science 29:4, pages 379-385.
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K. Valkó, G. Szabó, J. Röhricht, K. Jemnitz & F. Darvas. (1989) Prediction of retention of metabolites in high-performance liquid chromatography by an expert system approach. Journal of Chromatography A 485, pages 349-363.
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J.E. Parkin. (1989) High-performance liquid chromatography of mercury and phenylmercury as the N-disubstituted dithiocarbamate complexes. Journal of Chromatography A 472, pages 401-405.
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Paul M. Sherblom & Robert P. Eganhouse. (1988) Correlations between octanol-water partition coefficients and reversed-phase high-performance liquid chromatography capacity factors. Journal of Chromatography A 454, pages 37-50.
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Klára Valkó. (1987) The role of chromatography in drug design. TrAC Trends in Analytical Chemistry 6:8, pages 214-219.
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Thomas Braumann. (1986) Determination of hydrophobic parameters by reversed-phase liquid chromatography: theory, experimental techniques, and application in studies on quantitative structure-activity relationships. Journal of Chromatography A 373, pages 191-225.
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