Theory for electrostatic interaction chromatography of proteins.
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C. Horváth | B. Jönsson | B. Joensson | C Horváth | J Ståhlberg | Jan. Staahlberg | J. Ståhlberg | B Jönsson | Csaba. Horvath
[1] J. Kirkland,et al. Sampling and extra-column effects in high-performance liquid chromatography; influence of peak skew on plate count calculations. , 1977, Journal of chromatographic science.
[2] F. Regnier,et al. Thermodynamic model for electrostatic-interaction chromatography of proteins. , 1990, Journal of chromatography.
[3] Jan. Staahlberg,et al. Adsorption isotherm of tetrabutylammonium ion and its relation to the mechanism of ion pair chromatography , 1988 .
[4] C. Horváth,et al. Interplay of hydrophobic and electrostatic interactions in biopolymer chromatography. Effect of salts on the retention of proteins. , 1989, Journal of chromatography.
[5] C. Tanford,et al. Hydrogen Ion Equilibria of Bovine Serum Albumin1 , 1955 .
[6] J. J. Kirkland,et al. Synthesis and characterization of highly stable bonded phases for high-performance liquid chromatography column packings , 1989 .
[7] M. Hearn,et al. High-performance liquid chromatography of amino acids, peptides and proteins : XXXVI. Organic solvent modifier effects in the separation of unprotected peptides by reversed-phase liquid chromatography , 1981 .
[8] Jan St»hlberg. The Gouy—Chapman theory in combination with a modified langmuir isotherm as a theoretical model for ion-pair chromatography , 1986 .
[9] F. Regnier,et al. The importance of silica type for reverse-phase protein separations. , 1982, Analytical biochemistry.
[10] N K BOARDMAN,et al. Separation of neutral proteins on ion-exchange resins. , 1955, Nature.
[11] J. Köhler,et al. Syntheses of stationary phases for reversed-phase LC using silanization and polymer coating , 1984 .
[12] C. Tanford,et al. Interpretation of protein titration curves. Application to lysozyme. , 1972, Biochemistry.
[13] C. Tanford. Preparation and Properties of Serum and Plasma Proteins. XXIII. Hydrogen Ion Equilibria in Native and Modified Human Serum Albumins1a, 1b , 1950 .
[14] E. Kováts,et al. The preparation of mixed organic layers chemically bonded on silicon dioxide , 1984 .
[15] L. Snyder,et al. Separation of proteins by gradient elution from ion-exchange columns : Optimizing experimental conditions , 1986 .
[16] T. Welsch,et al. Characterization of a new dehydroxylated reversed phase material , 1983 .
[17] F. Regnier,et al. Retention model for high-performance ion-exchange chromatography☆ , 1983 .
[18] G. Guiochon,et al. Prediction of band profiles in displacement chromatography by numerical integration of a semi-ideal model , 1988 .
[19] J. Gregory,et al. Interaction of unequal double layers at constant charge , 1975 .
[20] B. Buszewski,et al. Preparation of silanized silica with high ligand density. The effect of silane structure , 1987 .
[21] Wei Cheng,et al. Effect of alkyl chain length on surface silanization of silica , 1985 .
[22] C. Horváth,et al. On the stoichiometric model of electrostatic interaction chromatography for biopolymers. , 1986, Journal of chromatography.
[23] M. Hearn,et al. High-performance liquid chromatography of amino acid peptides and proteins , 1987 .
[24] L. Fägerstam,et al. Use of electrophoretic titration curves for predicting optimal chromatographic conditions for fast ion exchange chromatography of proteins , 1983 .
[25] F. Regnier,et al. Comparison of hydrophobic-interaction and reversed-phase chromatography of proteins. , 1984, Journal of chromatography.
[26] N. Cooke,et al. Some Modern Concepts in Reversed-Phase Liquid Chromatography on Chemically Bonded Alkyl Stationary Phases , 1980 .
[27] M. F. Burke,et al. Synthesis of three alkyldihydrochlorosilanes and their application in studies of steric factors in the surface deactivation of porous silica , 1987 .
[28] L. D. Galan,et al. Preparation and Chromatographic Properties of Some Chemically Bonded Phases for Reversed-Phase Liquid Chromatography , 1978 .
[29] C. Tanford,et al. Hydrogen Ion Equilibria of Ribonuclease1 , 1956 .
[30] V. Vyskočil,et al. Determination of surface hydroxyl groups on silanized silica gels for reversed-phase liquid chromatography , 1981 .
[31] K. Unger,et al. Role of solvent and base in the silanization reaction of silicas for reversed-phase high-performance liquid chromatography , 1984 .
[32] A. J. Vega,et al. Comprehensive characterization of some silica-based stationary phase for high-performance liquid chromatography , 1986 .
[33] C. Horváth,et al. Surface silanols in silica-bonded hydrocarbonaceous stationary phases : II. Irregular retention behavior and effect of silanol masking , 1981 .
[34] C. Horváth,et al. Surface silanols in silica-bonded hydrocarbonaceous stationary phases , 1981 .
[35] D. Wetlaufer,et al. Relationship between isocratic and gradient retention times in the high-performance ion-exchange chromatography of proteins. Theory and experiment. , 1986, Journal of chromatography.
[36] M. Hearn,et al. High-performance liquid chromatography of amino acids, peptides and proteins : XL. Further studies on the role of the organic modifier in the reversed-phase high-performance liquid chromatography of polypeptides. Implications for gradient optimisation , 1983 .
[37] K. Unger,et al. Role of the functional group in n-octydimethylsilanes in the synthesis of C8 reversed-phase silica packings for high-performance liquid chromatography , 1986 .
[38] V A Parsegian,et al. On the electrostatic interaction across a salt solution between two bodies bearing unequal charges. , 1972, Biophysical journal.
[39] R. Mcdonald. Surface Functionality of Amorphous Silica by Infrared Spectroscopy , 1958 .
[40] C. Tanford,et al. Hydrogen Ion Equilibria of Lysozyme1,2 , 1954 .
[41] S. Wise,et al. Influence of substrate parameters on column selectivity with alkyl bonded-phase sorbents , 1984 .
[42] R. Hartwick,et al. Studies on the stabilization of reversed phases for liquid chromatography , 1988 .