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Dependence of enantioseparation performance on structure of chiral selectors derived from N-cycloalkylcarbonyl chitosan

机译:对映对性能对N-环烷基羰基壳聚糖的手性选择器结构的依赖性

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摘要

In order to study dependence of enantioseparation capability on structure of chiral selectors derived from N-cycloalkylcarbonyl chitosan, nine chitosan 3,6-bis(arylcarbamate)-2-(cyclopentylformamide)s were synthesized. The corresponding chiral stationary phases (CSPs) were prepared with the chitosan derivatives. Enantioseparation capability of the CSPs was evaluated under the same conditions with the same chiral analytes. Different from CSPs derived from cyclopropylcarbonyl, cyclobutylcarbonyl and cyclohexylcarbonyl chitosans, all the CSPs with halo and methyl substituents in the present work showed good enantioseparation capability. Therefore, N-cyclopentylcarbonyl chitosan is more preferable to be used to develop enantiomeric separation materials among N-cycloalkylcarbonyl chitosans. Besides, the chitosan derivatives in this study and cellulose Iris (3,5-dimethylphenylcarbamate) are complementary in enantioseparation for some chiral analytes. It was also observed that the chitosan derivative with 3,4-dichlorophenyl substituent baseline separated the most chiral analytes, thus revealing that this substituent can be applied as a building block to construct enantiomeric separation materials.
机译:为了研究对来自N-环烷基羰基壳聚糖的手性选择器结构对映对映对能力的依赖性,合成了九壳多糖3,6-双(芳基氨基甲酸酯)-2-(环戊基甲酰胺)S。用壳聚糖衍生物制备相应的手性固定相(CSP)。在具有相同手性分析的同一条件下评估CSP的映对能力。与源自环丙基羰基,环丁基羰基和环己基羰基壳聚糖的CSP不同,所有CSP和本作中的卤素和甲基取代基均显示出良好的映对能力。因此,更优选N-环戊基羰基壳聚糖在N-环烷基羰基壳聚糖中产生对映体分离材料。此外,本研究中的壳聚糖衍生物和纤维素氧化物(3,5-二甲基苯甲酯)对一些手性分析物进行酶进行辅助。还观察到,壳聚糖衍生物具有3,4-二氯苯基取代基基线的基线,分离了最多的手性分析物,因此显示该取代基可以用作构建嵌段以构建对映体分离材料。

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