Resolution of α-methyl-α-amino acid derivatives by gas chromatography on optically active diamide stationary phases
暂无分享,去创建一个
[1] E. Gil-av,et al. Gas Chromatographic resolution of optical isomers by diamide stationary phases, R′CONHCH(R″)CONHR‴ , 1982 .
[2] N. Ǒi,et al. Gas chromatographic separation of amino acid amide enantiomers on optically active stationary phases. , 1980, Journal of chromatography.
[3] E. Gil-av,et al. Chiral recognition in gas chromatogaphy by diamide-diamide solute-solvent interaction , 1980 .
[4] E. Gil-av,et al. N-docosanoyl-l-valine-2-(2-methyl)-n-heptadecylamide as a stationary phase for the resolution of optical isomers in gas-liquid chromatography , 1980 .
[5] H. Brückner,et al. Gas chromatographic determination of the configuration of isovaline in antiamoebin, samarosporin (emerimicin IV), stilbellin, suzukacillins and trichotoxins , 1980 .
[6] R. C. Pandey,et al. Structure of the peptide antibiotic antiamoebin II. , 1978, The Journal of antibiotics.
[7] G. Jung,et al. Die hämolytischen Eigenschaften der membranmodifizierenden Peptidantibiotika Alamethicin, Suzukacillin und Trichotoxin , 1977 .
[8] R. C. Pandey,et al. Structures of the peptide antibiotics. Emerimicins III and IV 1,2. , 1977, Journal of the American Chemical Society.
[9] R. C. Pandey,et al. Structure of antiamoebin I from high resolution field desorption and gas chromatographic mass spectrometry studies. , 1977, Journal of the American Chemical Society.
[10] W. Bonner,et al. The gas chromatographic resolution of DL-isovaline. , 1977, Journal of chromatography.
[11] S. Weinstein,et al. N-acyl derivatives of chiral amines as novel, readily prepared phases for the separation of optical isomers by gas chromatography , 1976 .
[12] B. Feibush,et al. Interaction between asymmetric solutes and solvents. Diamides derived from L-valine as stationary phases in gas-liquid partition chromatography. , 1976, Journal of chromatography.
[13] G. Jung,et al. Conformational changes of alamethicin induced by solvent and temperature. A 13C-NMR and circular-dichroism study. , 1975, European journal of biochemistry.
[14] L. Gillespie. CLINICAL PHARMACOLOGY OF NEWER ANTIHYPERTENSIVE AGENTS, MONOAMINE OXIDASE AND DECARBOXYLASE INHIBITORS, BRETYLIUM TOSYLATE, AND GUANETHIDINE , 1960, Annals of the New York Academy of Sciences.
[15] A. Sjoerdsma,et al. Decarboxylase Inhibition and Blood Pressure Reduction by α-Methyl-3,4-Dihydroxy-DL-phenylalanine , 1960, Science.
[16] J. Greenstein,et al. Studies on Diastereoisomeric α-Amino Acids and Corresponding α-Hydroxy Acids. II. Contribution of the Asymmetric α- and β-Carbon Atoms to the Molar Rotations of the Diastereomeric α-Aminotricarballylic Acids and Corresponding Isocitric Acids , 1955 .
[17] J. Hinman,et al. The Chemistry of Amicetin, a New Antibiotic1,2 , 1953 .
[18] E. Gil-av,et al. Separation of enantiomers on packed columns containing optically active diamide phases. , 1975, Journal of chromatography.
[19] C. Ponnamperuma,et al. Chemical evolution and the origin of life; Proceedings of the Third International Conference, Pont-a-Mousson, France, April 19-25, 1970. Volume 1 - Molecular evolution. , 1971 .