COVALENTLY BONDING CHIRAL POLYURETHANE ON AMINATED SILICA GEL:A NEW STRATEGY TO PREPARE CHIRAL STATIONARY PHASE FOR HIGH PERFORMANCE LIQUID CHROMATOGRAPHY
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COVALENTLY BONDING CHIRAL POLYURETHANE ON AMINATED SILICA GEL:A NEW STRATEGY TO PREPARE CHIRAL STATIONARY PHASE FOR HIGH PERFORMANCE LIQUID CHROMATOGRAPHY
COVALENTLY BONDING CHIRAL POLYURETHANE ON AMINATED SILICA GEL:A NEW STRATEGY TO PREPARE CHIRAL STATIONARY PHASE FOR HIGH PERFORMANCE LIQUID CHROMATOGRAPHY
高分子科学(英文版)2006年第2期 页码:107-114
Affiliations:
1. Department of Chemical Engineering and Pharmacy Wuhan Institute of Chemical Technology Wuhan 430073
2. China Key Laboratory of Novel Reactor and Green Chemical Engineering of Hubei Province
Author bio:
Funds:
This work was supported by the National Natural Science Foundation of China (No. 20371037)();the Natural Science Foundation of Hubei Province, China (No. 2002AB066).()
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柏正武. COVALENTLY BONDING CHIRAL POLYURETHANE ON AMINATED SILICA GEL:A NEW STRATEGY TO PREPARE CHIRAL STATIONARY PHASE FOR HIGH PERFORMANCE LIQUID CHROMATOGRAPHY[J]. 高分子科学(英文版), 2006,(2):107-114.
COVALENTLY BONDING CHIRAL POLYURETHANE ON AMINATED SILICA GEL:A NEW STRATEGY TO PREPARE CHIRAL STATIONARY PHASE FOR HIGH PERFORMANCE LIQUID CHROMATOGRAPHY[J]. 2006,(2):107-114.
柏正武. COVALENTLY BONDING CHIRAL POLYURETHANE ON AMINATED SILICA GEL:A NEW STRATEGY TO PREPARE CHIRAL STATIONARY PHASE FOR HIGH PERFORMANCE LIQUID CHROMATOGRAPHY[J]. 高分子科学(英文版), 2006,(2):107-114.DOI:
COVALENTLY BONDING CHIRAL POLYURETHANE ON AMINATED SILICA GEL:A NEW STRATEGY TO PREPARE CHIRAL STATIONARY PHASE FOR HIGH PERFORMANCE LIQUID CHROMATOGRAPHY[J]. 2006,(2):107-114.DOI:
COVALENTLY BONDING CHIRAL POLYURETHANE ON AMINATED SILICA GEL:A NEW STRATEGY TO PREPARE CHIRAL STATIONARY PHASE FOR HIGH PERFORMANCE LIQUID CHROMATOGRAPHY
<正>Two polyurethanes of different molecular weights were prepared by the copolymerization of phenyl diisocyanate and diisopropyl tartrate. The polyurethanes having terminal isocyanate groups were reacted with 3-aminopropyl silica gel to afford two chiral stationary phases. The Mn of the two polyurethanes were 4057 g/mol and 6442 g/mol. The polyurethanes and the corresponding chiral stationary phases were characterized by FT-IR, 1H NMR and elemental analysis. The loading capacities of the polyurethanes on silica gel were 0.68 mmol units/g and 0.61 mmol units/g, respectively. The separation performance and the influence of additives, triethylamine and trichloroacetic acid, on the separation of chiral compounds were investigated by HPLC. The chiral stationary phase prepared from polyurethane with Mn of 4057 g/mol demonstrated better enantioseparation capability than that with Mn of 6442 g/mol. Additionally, it was found that the addition of triethylamine and trichloroacetic acid in the mobile phases significantly improved the enantioseparation for these two chiral stationary phases.正>
Abstract
Two polyurethanes of different molecular weights were prepared by the copolymerization of phenyl diisocyanate and diisopropyl tartrate. The polyurethanes having terminal isocyanate groups were reacted with 3-aminopropyl silica gel to afford two chiral stationary phases. The Mn of the two polyurethanes were 4057 g/mol and 6442 g/mol. The polyurethanes and the corresponding chiral stationary phases were characterized by FT-IR, 1H NMR and elemental analysis. The loading capacities of the polyurethanes on silica gel were 0.68 mmol units/g and 0.61 mmol units/g, respectively. The separation performance and the influence of additives, triethylamine and trichloroacetic acid, on the separation of chiral compounds were investigated by HPLC. The chiral stationary phase prepared from polyurethane with Mn of 4057 g/mol demonstrated better enantioseparation capability than that with Mn of 6442 g/mol. Additionally, it was found that the addition of triethylamine and trichloroacetic acid in the mobile phases significantly improved the enantioseparation for these two chiral stationary phases.