| Publications of Dr. Imre Molnár |
| Über die Codestillation. I. Molnar, Dissertation, Universität des Saarlandes, Saarbrücken 1975
Solvophobic interactions in liquid chromatography with nonpolar stationary phases (Solvophobic Theory of Reversed Phase Chromatography, Part I). Cs. Horvath, W. Melander, I. Molnar, J. of Chromatogr., 1976, 125, 129-156. (pdf) An analytical method for the separation of dopamine metabolites in cellular extracts by HPLC. R. W. Stout, R. J. Michelot, I. Molnar, Cs. Horvath, J. K. Coward, Analytical Biochemistry, 1976, 76, 330-341. Reversed-phase chromatography of polar biological substances: Separation of catechol compounds by HPLC. I. Molnar, Cs. Horvath, Clinical Chemistry, 1976, 22, 1497-1502. Liquid chromatography of ionogenic substances with nonpolar stationary phases (Solvophobic Theory of Reversed Phase Chromatography, Part II). Cs. Horvath, W. Melander, I. Molnar, Analytical Chemistry, 1977, 49, 142-153. (pdf) Rapid separation of urinary acids by HPLC. Enhancement of retention by ion-pair formation in liquid chromatography with nonpolar stationary phases (Solvophobic Theory of Reversed Phase Chromatography, Part III). Cs. Horvath, W. Melander, I. Molnar, P. Molnar, Anal.Chem., 1977, 49, 2295-2305. (pdf) Separation of amino acids and peptides on non-polar stationary phases by HPLC. Rapid analysis of peptide mixtures by HPLC with nonpolar stationary phases. Catecholamines and related compounds. Separation of urinary aromatic acids, measurement of VMA by HPLC. Herstellung und Behandlung von HPLC-Säulen unter Routinebedingungen. HPLC of Ions. I. Molnar, H. Knauer, D. Wilk, J. of Chromatogr., 1980, 202, 225. Reversed phase chromatographic profiles of peptide immunoreactivities in human Structure-retention relationships and selectivity of peptides and proteins on nonpolar stationary phases. I.Molnar, M.Schöneshöfer, HPLC in Protein and Peptide Chemistry, ed.Henschen, Lottspeich, Hupe, 1980, p.98, Walter de Gruyter & Co, Berlin, New York Prediction of experimental parameters in combined isocratic and gradient elutionreversed phase HPLC (RP-HPLC) using acetonitrile as organic modifier. Heterogeneity of corticotropin-immunoreactive compounds in human body fluids M. Schöneshöfer, A. Fenner, I. Molnar, Clin. Chem., 1981, 27, 1875. HPLC of Proteins: Analytical applications. K. Buchholz, B. Gödelmann, I. Molnar, J. of Chromatogr., 1982, 238, 193. Analytik von Peptiden, Proteinen und Polynukleotiden durch HPLC, Practical Aspects of HPLC, Proceedings of the Symposium in Berlin, Dec. 1981 Ed. I. Molnar, Verlag Walter De Gruyter, Berlin, New York, 1983 Retention in practical HPLC. The Current role of HPLC for the routine analysis of endogenous compounds in clinical chemistry. M. Schöneshöfer, I. Molnar, ibid, 41. HPLC of membrane bound proteins. D. Josic, W. Reuter, I. Molnar, ibid, 109. Separation of Proteins by Size Exclusion and Reversed Phase HPLC. The HPLC of divalent sulphur. Improvement of column performance in HPLC using a special inlet port. W. Lamer, I. Molnar, ibid, 213. Influence of flow splitting and radial injection on column performance in HPLC. Rapid measurement of Cyclosporin A plasma levels by HPLC in allograft transplant recipients. H. Wilms, I. Molnar, Chromatographia, 1984, 19, 472. (pdf) Saccharidtrennung mittels Gradientenelution.W. Mauch, A. Gennrich, I. Molnar, Z. Lebensm. Unters. Forsch., 1987, 185, 383. Untersuchung der mittleren Molmasse und Molmassenverteilung von ultrahochmolekularem Polyethylen (UHMWPE) High Performance Liquid Chromatography of Thermus aquaticus 50S and 30S Ribosomal Proteins. I. Molnar, R. I. Boysen, V. A. Erdmann, Chromatographia, 1989, 28, 39. (pdf) Peak Tracking in High Performance Liquid Chromatography based on normalised band areas. Isolation and Characterization of the Cytosolic and Chloroplastic 3-Phosphoglycerate Kinase from Spinach Leaves. Fast development of a robust HPLC method for Gingko Biloba based on computer simulation. Biopolymer-Analyzer: HPLC-Anlage zur Online-Verknüpfung von SEC und RPC. C. Halbmeyer, I. Molnar, Biotec, 1991, 4, 56. Investigation of gamma-irradiation of alpha-tocopherol and its related derivatives by HPLC using a rapid scanning spectrophotometer. I. Molnar, S. Koswig, J. Chromatogr., 1992, 605, 49. Application of the gradient elution technique. Demonstration with a special test mixture and the DryLab G/plus method development software. Bestimmung von Nebenprodukten in Atenolol. Computer simulation for the prediction of separation as a function of pH for reversed-phase high-performance liqiud chromatography I. Accuracy of a theory-based model. Computer simulation for the prediction of separation as a function of pH for reversed-phase high performance liquid chromatography II. Resolution as a function of simultaneous change in pH and solvent strength. HPLC-Bestimmung von Cytarabin. Basenstabile Umkehrphasen auf Basis Kieselgel. Computergestützte Optimierung in der Chromatographie. Separation of Arachidonic Acid Metabolites by Online-Extraction, Reversed Phase High Pressure Liquid Chromatography Optimized by Computer Simulation. High-Performance Liquid Chromatographic Separation of the Impurities in a Validation of Robust Chromatography Methods Using Computer Assisted Method Development for Quality Control. Selectivity Control in HPLC Method Development. Computerized optimization of the High-Performance Liquid Chromatographic Enantioseparation of a mixture of 4-dinitrophenyl amino acids on a quinine carbamate-type chiral stationary phase using DryLab. Validation of Robust Chromatography Methods Using Computer-Assisted Method Development for Quality Control. II. Reversed-Phase Gradient Elution: How to Get Better Results with Less Work. Robuste HPLC- Methoden. Teil 1: Der Validierungsprozess bei HPLC- Analysen und die rasche Beurteilung von Schwachstellen in der Chromatographie Robuste HPLC- Methoden. Teil 2: Definition und Überprüfung der Robustheit. Robuste HPLC- Methoden. Teil 3: Robuste isokratische und robuste Gradientenmethoden. Robuste HPLC- Methoden.Teil 4: Zulässige Toleranzen der eingestellten Arbeitsparameter. Unexpected Results in Chromatography. Computer-assisted optimization in the development of a high performance liquid chromatographic method for the analysis of kava pyrones in Piper methysticum preparations. Two- dimensional optimization using different pairs of variables for the reversed-phase high-performance liquid chromatographic separation of a mixture of acidic compounds. Computerized design of separation strategies in reversed-phase liquid chromatography: Development of DryLab software. Advanced high performance liquid chromatography method development Optimizing Multilinear Gradients in HPLC. Searching for Robust HPLC Methods - Csaba Horváth and the Solvophobic Theory. Retention modelling in ternary solvent-strength gradient elution reversed phase chromatography using 30 mm columns. Artificial Neural Network Modeling of Structure Mobility Relationships in CZE. T. Chovan, S. Mittermayr, T. Kenesei, M. Olajos, I. Molnar, F. Darvas, A. Guttman, Paper presented at the Balaton-Symposium in Siofok, Hungary, Sept. 2007 Artificial Neural Network Modeling of pH Dependent Structural Descriptor- Rapid high performance liquid chromatography method development with high prediction accuracy, using 5 cm long narrow bore columns packed with sub-2_m particles and Design Space computer modeling Szabolcs Fekete, J. Fekete, Imre Molnár, K.Ganzler, J. Chromatography A, 1216 (2009) 7816–7823 (pdf) Aspects of the “Design Space” in High Pressure Liquid Chromatography Method Development, I. Molnár, H.-J. Rieger, K.E. Monks, J.Chromatogr., in print |
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