Resolution of various -DNS DL-amino acids by ligand exchange chromatography of L-phenylalaninamide–copper(II) complexes on a conventional reversed-phase packing is reported. Parameters of the mobile phase which control retention and enantioselectivity such as concentration of Cu(II) ion and L phenylalaninamide (PheNH2), pH, ionic strength, and acetonitrile content were examined. In order to obtain further information on the distribution and stability of the prevailing complex species formed between the metal ion and the chiral selector, spectrophotometric measurements in different media were also carried out
The synthesis of a new chiral agent, (R,R) (-)N, N'-trans-1, 2-dihexylcyclohexanediamine, for the ch...
A conventional nonchiral column was used for the enantioseparation of several racemic -amino acids (...
A Bakerbond ODS column was dynamically coated with the chiral selector N-decyl-L-histidine, and then...
A study developing enantiomeric separations by metal chelate additives to the mobile phase in revers...
The enantiomeric separation of unmodified D,L-amino acids and Dns-amino acids in RP-HPLC by copper(I...
The copper(II) complexes of two new diastereomeric ligands, N2-(R)- and N2-(S)-2′-hydroxypropyl-(S)-...
(S)- and (R)-phenylalaninamide [(S)- and (R)-pheA, respectively] were covalently bonded to silica, a...
The copper(II) complexes of two new diastereomeric ligands, N2-(R)- and N2-(S)-2'-hydroxypropyl-(S)-...
Cu(II) complexes of L-amino acid amides added to the eluent in reversed-phase HPLC are able to perfo...
Three chiral stationary phases, obtained by grafting silica gel with (-)-trans-1,2-cyclohexanediamin...
Copper(II) complexes of N2-octyl-(S)-phenylalaninamide (Noc-Phe-NH2), N2-dodecyl-(S)-phenylalaninami...
It is well known for several decades that the two enantiomeric forms of a chiral compound can have v...
Amino acid enantiomers are separated by reverse-phase chromatography with an optically active polyam...
75-80Chiral recognition mechanism and enantioseparation conditions of tryptophan enantiomers using l...
A novel chiral stationary phase based on chitosan covalently bonded onto silica gels has been prepar...
The synthesis of a new chiral agent, (R,R) (-)N, N'-trans-1, 2-dihexylcyclohexanediamine, for the ch...
A conventional nonchiral column was used for the enantioseparation of several racemic -amino acids (...
A Bakerbond ODS column was dynamically coated with the chiral selector N-decyl-L-histidine, and then...
A study developing enantiomeric separations by metal chelate additives to the mobile phase in revers...
The enantiomeric separation of unmodified D,L-amino acids and Dns-amino acids in RP-HPLC by copper(I...
The copper(II) complexes of two new diastereomeric ligands, N2-(R)- and N2-(S)-2′-hydroxypropyl-(S)-...
(S)- and (R)-phenylalaninamide [(S)- and (R)-pheA, respectively] were covalently bonded to silica, a...
The copper(II) complexes of two new diastereomeric ligands, N2-(R)- and N2-(S)-2'-hydroxypropyl-(S)-...
Cu(II) complexes of L-amino acid amides added to the eluent in reversed-phase HPLC are able to perfo...
Three chiral stationary phases, obtained by grafting silica gel with (-)-trans-1,2-cyclohexanediamin...
Copper(II) complexes of N2-octyl-(S)-phenylalaninamide (Noc-Phe-NH2), N2-dodecyl-(S)-phenylalaninami...
It is well known for several decades that the two enantiomeric forms of a chiral compound can have v...
Amino acid enantiomers are separated by reverse-phase chromatography with an optically active polyam...
75-80Chiral recognition mechanism and enantioseparation conditions of tryptophan enantiomers using l...
A novel chiral stationary phase based on chitosan covalently bonded onto silica gels has been prepar...
The synthesis of a new chiral agent, (R,R) (-)N, N'-trans-1, 2-dihexylcyclohexanediamine, for the ch...
A conventional nonchiral column was used for the enantioseparation of several racemic -amino acids (...
A Bakerbond ODS column was dynamically coated with the chiral selector N-decyl-L-histidine, and then...