A new method to prepare polysaccharide-coating type chiral stationary phases (CSPs) was developed in this work. As a typical example, naked silica gel was coated by cellulose, which was then derivatized with 3,5-dim...A new method to prepare polysaccharide-coating type chiral stationary phases (CSPs) was developed in this work. As a typical example, naked silica gel was coated by cellulose, which was then derivatized with 3,5-dimethylbenzoyl chloride to afford cellulose tris(3,5-dimethylbenzoate)-silica gel (CTDBS) complex. The silanols on CTDBS were end-capped with 3- aminopropyltriethoxysilane to obtain CSP 1. The amino groups on CSP 1 were further end-capped with 3,5-dimethylbenzoyl chloride to give CSP 2. The silanols on CTDBS were end-capped with methyltrimethoxysilane to yield CSP 3. CSPs 1-3 were characterized by FTIR, solid-state 13C-NMR and elemental analysis. The enantioseparation abilities of CSPs 1-3 were evaluated with structurally various chiral analytes. The enantioseparation results demonstrated that the end-capping moieties on CSPs 1 and 2 significantly affected enantioseparation. In addition, the effect of the structures of chiral analytes and end- capping moieties on the retention factors and the resolutions was discussed.展开更多
Amylose tris(3,5-dimethylphenylcarbamate) (ADMPC) coated on a kind of small particle silica gel was pre-pared. On this ADMPC chiral stationary phase (CSP), the direct enantiomeric separation of six novel chiral transi...Amylose tris(3,5-dimethylphenylcarbamate) (ADMPC) coated on a kind of small particle silica gel was pre-pared. On this ADMPC chiral stationary phase (CSP), the direct enantiomeric separation of six novel chiral transi-tion metal tetrahedral clusters has firstly been achieved using n-hexane as the mobile phase containing various al-cohols as modifiers. The effect of mobile phase modifiers and the structural variation of the solutes on their reten-tion factors (k) and resolutions (Rs) were investigated. The result suggests that not only the structure and concentra-tion of alcohol in mobile phase, but also the structural differences in racemates can have a pronounced effect on enantiomeric separation. ADMPC-CSP is a suitable CSP for the optical resolution of chiral tetrahedral cluster by HPLC.展开更多
基金supported by the "111 Project" from the Ministry of Education of China and the State Administration of Foreign Expert Affairs of China(No.111-2-07)National Science and Technology Major Projects of China(No.2012ZX09103-101-030)and the Project Program of State Key Laboratory of Natural Medicines,China Pharmaceutical University(No.ZJ12009)
基金financially supported by the National Natural Science Foundation of China(No.50973086)Hubei Provincial Department of Education of China(Z 20081501)
文摘A new method to prepare polysaccharide-coating type chiral stationary phases (CSPs) was developed in this work. As a typical example, naked silica gel was coated by cellulose, which was then derivatized with 3,5-dimethylbenzoyl chloride to afford cellulose tris(3,5-dimethylbenzoate)-silica gel (CTDBS) complex. The silanols on CTDBS were end-capped with 3- aminopropyltriethoxysilane to obtain CSP 1. The amino groups on CSP 1 were further end-capped with 3,5-dimethylbenzoyl chloride to give CSP 2. The silanols on CTDBS were end-capped with methyltrimethoxysilane to yield CSP 3. CSPs 1-3 were characterized by FTIR, solid-state 13C-NMR and elemental analysis. The enantioseparation abilities of CSPs 1-3 were evaluated with structurally various chiral analytes. The enantioseparation results demonstrated that the end-capping moieties on CSPs 1 and 2 significantly affected enantioseparation. In addition, the effect of the structures of chiral analytes and end- capping moieties on the retention factors and the resolutions was discussed.
基金Project supported by Chinese Academy of Science (No. KY95-S1-205).
文摘Amylose tris(3,5-dimethylphenylcarbamate) (ADMPC) coated on a kind of small particle silica gel was pre-pared. On this ADMPC chiral stationary phase (CSP), the direct enantiomeric separation of six novel chiral transi-tion metal tetrahedral clusters has firstly been achieved using n-hexane as the mobile phase containing various al-cohols as modifiers. The effect of mobile phase modifiers and the structural variation of the solutes on their reten-tion factors (k) and resolutions (Rs) were investigated. The result suggests that not only the structure and concentra-tion of alcohol in mobile phase, but also the structural differences in racemates can have a pronounced effect on enantiomeric separation. ADMPC-CSP is a suitable CSP for the optical resolution of chiral tetrahedral cluster by HPLC.