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Volumn 1348, Issue , 2014, Pages 87-96
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Possible resolution gain in enantioseparations afforded by core-shell particle technology
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Author keywords
Chiral chromatography; Core shell particles; Mass transfer mechanism; Resolution factor; Slow adsorption desorption kinetics
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Indexed keywords
ADSORPTION;
CHIRALITY;
DESORPTION;
LAPLACE TRANSFORMS;
LIQUID CHROMATOGRAPHY;
POROUS MATERIALS;
ADSORPTION-DESORPTION KINETICS;
CHIRAL CHROMATOGRAPHY;
CORE-SHELL PARTICLE;
MASS TRANSFER MECHANISM;
RESOLUTION FACTORS;
SHELLS (STRUCTURES);
CELLULOSE;
ADSORPTION;
ARTICLE;
CALCULATION;
CHIRAL CHROMATOGRAPHY;
COLUMN CHROMATOGRAPHY;
CORE SHELL PARTICLE;
DESORPTION;
ENANTIOSEPARATION;
HEIGHT EQUIVALENT TO A THEORETICAL PLATE;
MATERIALS;
PARTICLE SIZE;
PHYSICAL PARAMETERS;
POROSITY;
PREDICTION;
PRIORITY JOURNAL;
SEPARATION TECHNIQUE;
CHIRAL CHROMATOGRAPHY;
CORE-SHELL PARTICLES;
MASS TRANSFER MECHANISM;
RESOLUTION FACTOR;
SLOW ADSORPTION-DESORPTION KINETICS;
ADSORPTION;
CELLULOSE;
CHROMATOGRAPHY, LIQUID;
DIFFUSION;
MODELS, THEORETICAL;
PARTICLE SIZE;
POROSITY;
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EID: 84901499733
PISSN: 00219673
EISSN: 18733778
Source Type: Journal
DOI: 10.1016/j.chroma.2014.04.041 Document Type: Article |
Times cited : (25)
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References (44)
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