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0025018127
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Retention behavior and chiral recognition mechanism of several cyclodextrin-bonded stationary phases for dansyl amino acids
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0025125802
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Separation of carotenes on cyclodextrin-bonded phases
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Stalcup AM, Jin HL, Armstrong DW, Mazur P, Derguini F, Nakanishi K. Separation of carotenes on cyclodextrin-bonded phases. J Chromatogr 1990;499:627-635.
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Theoretical considerations concerning the separation of enantiomeric solutes by liquid chromatography
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Boehm RE, Martire DE, Armstrong DW. Theoretical considerations concerning the separation of enantiomeric solutes by liquid chromatography. Anal Chem 1988;60:522-528.
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Boehm, R.E.1
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A new, easily accessible reciprocal chiral stationary phase for the chromatographic separation of enantiomers
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Pirkle WH, Pochapsky TC. A new, easily accessible reciprocal chiral stationary phase for the chromatographic separation of enantiomers. J Am Chem Soc 1986;108:352-354.
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Chiral separations using native and functionalized cyclodextrin-bonded stationary phases in high-performance liquid chromatography
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Ahuja S, editor. Washington, DC: ACS
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Menges RA, Armstrong DW. Chiral separations using native and functionalized cyclodextrin-bonded stationary phases in high-performance liquid chromatography. In: Ahuja S, editor. Chiral separation by liquid chromatography. Washington, DC: ACS; 1990. p 67-80.
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Menges, R.A.1
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0001233553
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Comparison of liquid chromatographic separations of geometrical isomers of substituted phenols with β- and γ-cyclodextrin bonded-phase columns
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Chang CA, Wu Q. Comparison of liquid chromatographic separations of geometrical isomers of substituted phenols with β- and γ -cyclodextrin bonded-phase columns. Anal Chim Acta 1986;189:293-299.
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0022558485
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Reversed-phase high-performance liquid chromatographic separation of substituted phenolic compounds with α-cyclodextrin bonded phase column
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Chang CA, Wu Q, Armstrong DW. Reversed-phase high-performance liquid chromatographic separation of substituted phenolic compounds with α-cyclodextrin bonded phase column. J Chromatogr 1986;354: 454-458.
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Derivatized cyclodextrins for normal-phase liquid chromatographic separation of enantiomers
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Armstrong DW, Stalcup AM, Hilton ML, Duncan DJ, Faulkner J, Chang SC. Derivatized cyclodextrins for normal-phase liquid chromatographic separation of enantiomers. Anal Chem 1990;62: 1610-1615.
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9
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0026060808
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(R)- and (S)-Naphthylethylcarbamate-substituted-cyclodextrin bonded stationary phases for the reversed-phase liquid chromatographic separation of enantiomers
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Armstrong DW, Chang CD, Lee SH. (R)- and (S)-Naphthylethylcarbamate-substituted-cyclodextrin bonded stationary phases for the reversed-phase liquid chromatographic separation of enantiomers. J Chromatogr 1991;539:83-90.
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Armstrong, D.W.1
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10
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0026596014
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A new approach for the direct resolution of racemic beta adrenergic blocking agents by HPLC
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Armstrong DW, Chen S, Chang S, Chang C. A new approach for the direct resolution of racemic beta adrenergic blocking agents by HPLC. J Liq Chromatogr 1992;15:545-556.
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Armstrong, D.W.1
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11
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0027173048
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Evaluation of a new polar-organic high-performance liquid chromatographic mobile phase for cyclodextrin-bonded chiral stationary phases
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Chang SC, Reid GL, Chen S, Chang CD, Armstrong DW. Evaluation of a new polar-organic high-performance liquid chromatographic mobile phase for cyclodextrin-bonded chiral stationary phases. Trends Anal Chem 1993;12:144-153.
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Chang, S.C.1
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12
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0028950897
-
Enantioresolution of substituted 2-methoxy-6-oxo-1,4,5,6-tetrahydro-pyridine-3-carbonitriles on macrocyclic antibiotic and cyclodextrin stationary phases
-
Chen S, Liu Y, Armstrong DW, Borrell JI, Martinez-Teipel B, Matallana J. Enantioresolution of substituted 2-methoxy-6-oxo-1,4,5,6-tetrahydro-pyridine-3-carbonitriles on macrocyclic antibiotic and cyclodextrin stationary phases. J Liq Chromatogr 1995;18:1495-1507.
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Chen, S.1
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13
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0029868230
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Capillary electrophoretic enantiomeric separations using the glycopeptide antibiotic, teicoplanin
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Rundlett Kimber L, Gasper Mary P, Zhou Eve Y, Armstrong DW. Capillary electrophoretic enantiomeric separations using the glycopeptide antibiotic, teicoplanin. Chirality 1996;8:88-107.
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14
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0031828171
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Highly enantioselective HPLC separations using the covalently bonded macrocyclic antibiotic, ristocetin A, chiral stationary phase
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Ekborg-Ott Helen K, Liu Youbang, Armstrong DW. Highly enantioselective HPLC separations using the covalently bonded macrocyclic antibiotic, ristocetin A, chiral stationary phase. Chirality 1998;10: 434-483.
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Ekborg-Ott Helen, K.1
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15
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0029913244
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Facile liquid chromatographic enantioresolution of native amino acids and peptides using a teicoplanin chiral stationary phase
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Berthod A, Liu Y, Bagwill C, Armstrong DW. Facile liquid chromatographic enantioresolution of native amino acids and peptides using a teicoplanin chiral stationary phase. J Chromatogr A 1996;731: 123-137.
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0028285515
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Use of a macrocyclic antibiotic, rifamycin B, and indirect detection for the resolution of racemic amino alcohols by CE
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Armstrong DW, Rundlett K, Reid GR. Use of a macrocyclic antibiotic, rifamycin B, and indirect detection for the resolution of racemic amino alcohols by CE. Anal Chem 1994;66:1690-1695.
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0028884832
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Enantiomeric resolution using the macrocyclic antibiotics rifamycin B and rifamycin SV as chiral selectors for capillary electrophoresis
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Ward TJ, Dann C, Blaylock A. Enantiomeric resolution using the macrocyclic antibiotics rifamycin B and rifamycin SV as chiral selectors for capillary electrophoresis. J Chromatogr A 1995;715:337-344.
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0028227322
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Macrocyclic antibiotics as a new class of chiral selectors for liquid chromatography
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Armstrong DW, Tang Y, Chen S, Zhou Y, Bagwill C. Macrocyclic antibiotics as a new class of chiral selectors for liquid chromatography. Anal Chem 1994;66:1473-1484.
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19
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0038650532
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Enantiomeric separation by HPLC of 1,4-dihydropyridines with vancomycin as chiral selector
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Boatto G, Nieddu M, Faedda MV, de Caprariis P. Enantiomeric separation by HPLC of 1,4-dihydropyridines with vancomycin as chiral selector. Chirality 2003;15:494-497.
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0034837256
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Study of the mechanism of enantioseparation. I. Chiral analysis of alkylamino derivatives of aryloxypropanols by HPLC using macrocyclic antibiotics as chiral selectors
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Hrobonova K, Lehotay J, Cizmarikova R, Armstrong DW. Study of the mechanism of enantioseparation. I. Chiral analysis of alkylamino derivatives of aryloxypropanols by HPLC using macrocyclic antibiotics as chiral selectors. J Liq Chromatogr 2001;24:2225-2237.
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0028842150
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Highly enantioselective capillary electrophoretic separations with dilute solutions of the macrocyclic antibiotic ristocetin A
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Armstrong DW, Gasper MP, Rundlett KL. Highly enantioselective capillary electrophoretic separations with dilute solutions of the macrocyclic antibiotic ristocetin A. J Chromatogr 1995;689:285-304.
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0028566523
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Foam flotation enrichment of enantiomers
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Armstrong DW, Zhou EY, Chen S, Le K, Tang Y. Foam flotation enrichment of enantiomers. Anal Chem 1994;66:4278-4282.
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1942417893
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The HPLC enantioresolution of selected native or derivatized amino acids on teicoplanin bonded chiral stationary phase using a methanol-based mobile phase
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Chen S. The HPLC enantioresolution of selected native or derivatized amino acids on teicoplanin bonded chiral stationary phase using a methanol-based mobile phase. J Chin Chem Soc 2002;49:545-551.
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The enantioresolution of n-benzoyl and its analogs derivatized amino acids on cyclodextrin bonded chiral stationary phases using a nonaqueous acetonitrile-based mobile phase
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Chen S. The enantioresolution of n-benzoyl and its analogs derivatized amino acids on cyclodextrin bonded chiral stationary phases using a nonaqueous acetonitrile-based mobile phase. J Chin Chem Soc 1996;43:45-51.
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