A CHROMATOGRAPHIC METHOD FOR MEASURING K F OF ENANTIOMER-CHIRAL SELECTOR COMPLEXES (original) (raw)
Evaluation of the enantiomeric selectivity in the chiral ligand-exchange chromatography of amino acids by a computational model
Roccaldo Sardella
Journal of Chromatography A, 2004
View PDFchevron_right
Considerations of chiral recognition relevant to the liquid chromatography separation of enantiomers
Thomas Pochapsky
Chemical Reviews, 1989
View PDFchevron_right
Amino acids as chiral selectors in enantioresolution by liquid chromatography
Ravi Bhushan
Biomedical Chromatography, 2012
View PDFchevron_right
Computational studies for the elucidation of the enantiomer elution order of amino acids in chiral ligand-exchange chromatography
Roccaldo Sardella
2010
View PDFchevron_right
Measurements of association constants between enantiomers and chiral selectors by capillary gas chromatography. Theoretical and practical considerations
Sonia Keunchkarian
Journal of Chromatography A, 2014
View PDFchevron_right
Enantiomer Separation by Countercurrent Chromatography Using Cinchona Alkaloid Derivatives as Chiral Selectors
Cristina Minguillón
Analytical Chemistry, 2002
View PDFchevron_right
Chiral recognition mechanisms in enantiomers separations: A general view
Alain Berthod
2010
View PDFchevron_right
Determination of Enantiomeric Compositions by Transient AbsorptionSpectroscopy using Proteins as Chiral Selectors
Miguel Miranda
Chemistry a European Journal, 2008
View PDFchevron_right
Effect of Mobile Phase pH* on Chromatographic Behaviour in Chiral Ligand-Exchange Thin-Layer Chromatography (CLETLC) of Amino Acid Enantiomers
Beata Polak
Chromatographia, 2006
View PDFchevron_right
Elucidation of the Chiral Recognition Mechanism of Cinchona Alkaloid Carbamate-type Receptors for 3,5-Dinitrobenzoyl Amino Acids
Jaqueline Senra
Journal of the American Chemical Society, 2002
View PDFchevron_right
The on-line determination of the enantiomeric purity of enzymatically produced chiral compounds
Irving Wainer
Chromatographia, 1993
View PDFchevron_right
Designed combination of chiral selectors for adjustment of enantioseparation selectivity in capillary electrophoresis
Jacques Crommen
Electrophoresis, 1999
View PDFchevron_right
Enantiomeric separation of N-protected amino acids by non-aqueous capillary electrophoresis with dimeric forms of quinine and quinidine derivatives serving as chiral selectors
Jacques Crommen
Journal of Chromatography A, 2002
View PDFchevron_right
Ligand exchange chromatography of amino alcohols. Use of Schiff bases in enantiomer resolution
Barry Karger
Journal of the American Chemical Society, 1984
View PDFchevron_right
Enantiomer separation of a powerful chiral auxiliary, 2-methoxy-2-(1-naphthyl)propionic acid by liquid chromatography using chiral anion exchanger-type stationary phases in polar-organic mode; investigation of molecular recognition aspects
Wolfgang Lindner
Chirality, 2005
View PDFchevron_right
About the role of enantioselective selector-selectand interactions and the mobilities of diastereomeric associates in enantiomer separations using CE
Lali Chankvetadze, Bezhan Chankvetadze
ELECTROPHORESIS, 2009
View PDFchevron_right
Influence of structure and chirality of the selector on the chiral recognition of amino acids using ligand-exchange capillary electrophoresis
Armin Presser
ELECTROPHORESIS, 2002
View PDFchevron_right
Enantiomer separation by counter-current chromatography
Cristina Minguillón
Journal of Chromatography A, 2005
View PDFchevron_right
Elucidation of chiral Recognition mechanism of alpha-amino acids using ligand exchange high performance liquid chromatography
Rodrigo Senra
Journal of The Brazilian Chemical Society, 2007
View PDFchevron_right
Fundamental Developments of Chiral Phase Chromatography in Connection with Enantioselective Synthesis of β-Amino Acids
Jorge Vargas Caporali
Israel Journal of Chemistry, 2017
View PDFchevron_right
Enantiomer separation of N-protected amino acids by non-aqueous capillary electrophoresis and high-performance liquid chromatography with tert.-butyl carbamoylated quinine in either the background electrolyte or the stationary phase
Jacques Crommen
Journal of Chromatography A, 2003
View PDFchevron_right
Structure-enantioselectivity relationships for the study of chiral recognition in peptide enantiomer separation on cinchona alkaloid-based chiral stationary phases by HPLC: Influence of the N-terminal protecting group
Wolfgang Lindner
Journal of Separation Science, 2003
View PDFchevron_right
Molecular recognition in chiral discrimination
Raluca-ioana Stefan
Crystal Engineering, 2001
View PDFchevron_right
Enantioselective chromatography in drug discovery
Adrienne Tymiak
Drug Discovery Today, 2005
View PDFchevron_right
Novel enantioselective strong cation exchangers based on sulfodipeptide selectors: Evaluation for enantiomer separation of chiral bases by nonaqueous capillary electrochromatography
Wolfgang Lindner
ELECTROPHORESIS, 2004
View PDFchevron_right
Enantioselective strong cation-exchange molecular recognition materials: Design of novel chiral stationary phases and their application for enantioseparation of chiral bases by nonaqueous capillary electrochromatography
Wolfgang Lindner
ELECTROPHORESIS, 2003
View PDFchevron_right
Useful and easily prepared chiral stationary phases for the direct chromatographic separation of the enantiomers of a variety of derivatized amines, amino acids, alcohols, and related compounds
Thomas Pochapsky
The Journal of Organic Chemistry, 1986
View PDFchevron_right
Chiral recognition mechanisms with macrocyclic glycopeptide selectors
Alain Berthod
Chirality, 2009
View PDFchevron_right
Peptide enantiomer separations: Influence of sequential isomerism and the introduction of achiral glycine moieties on chiral recognition
Wolfgang Lindner
Journal of Chromatography A, 2005
View PDFchevron_right
Increments to chiral recognition facilitating enantiomer separations of chiral acids, bases, and ampholytes using Cinchona-based zwitterion exchanger chiral stationary phases
Wolfgang Lindner
Journal of Separation Science, 2012
View PDFchevron_right
Enantiomeric separation of N‐protected amino acids by non‐aqueous capillary electrophoresis using quinine or Tert‐butyl carbamoylated quinine as chiral additive
Jacques Crommen
Chirality, 1999
View PDFchevron_right
Quinine carbamate chiral stationary phases: Systematic optimization of steric selector-selectand binding increments and enantioselectivity by quantitative structure-enantioselectivity relationship studies
Wolfgang Lindner
Journal of Separation Science, 2006
View PDFchevron_right
Descriptive structure-separation relationship studies in chiral ligand-exchange chromatography
Roccaldo Sardella
Journal of Separation Science, 2008
View PDFchevron_right
Chiral molecular recognition for the detection and analysis of enantiomers by mass spectrometric methods
Wolfgang Lindner
Journal of Separation Science, 2005
View PDFchevron_right
(S)-(–)-α,α-Di(2-naphthyl)-2-pyrrolidinemethanol, a useful tool to study the recognition mechanism in chiral ligand-exchange chromatography
Roccaldo Sardella
Journal of Separation Science, 2007
View PDFchevron_right