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首页> 外文期刊>Molecules >Nanocellulose Derivative/Silica Hybrid Core-Shell Chiral Stationary Phase: Preparation and Enantioseparation Performance
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Nanocellulose Derivative/Silica Hybrid Core-Shell Chiral Stationary Phase: Preparation and Enantioseparation Performance

机译:纳米纤维素衍生物/二氧化硅杂核-壳手性固定相:制备和对映体分离性能

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Core-shell silica microspheres with a nanocellulose derivative in the hybrid shell were successfully prepared as a chiral stationary phase by a layer-by-layer self-assembly method. The hybrid shell assembled on the silica core was formed using a surfactant as template by the copolymerization reaction of tetraethyl orthosilicate and the nanocellulose derivative bearing triethoxysilyl and 3,5-dimethylphenyl groups. The resulting nanocellulose hybrid core-shell chiral packing materials (CPMs) were characterized and packed into columns, and their enantioseparation performance was evaluated by high performance liquid chromatography. The results showed that CPMs exhibited uniform surface morphology and core-shell structures. Various types of chiral compounds were efficiently separated under normal and reversed phase mode. Moreover, chloroform and tetrahydrofuran as mobile phase additives could obviously improve the resolution during the chiral separation processes. CPMs still have good chiral separation property when eluted with solvent systems with a high content of tetrahydrofuran and chloroform, which proved the high solvent resistance of this new material.
机译:通过逐层自组装方法成功制备了杂化壳中具有纳米纤维素衍生物的核壳二氧化硅微球作为手性固定相。使用表面活性剂作为模板,通过原硅酸四乙酯与带有三乙氧基甲硅烷基和3,5-二甲基苯基的纳米纤维素衍生物的共聚反应,形成组装在二氧化硅核上的杂化壳。对所得的纳米纤维素杂化核-壳手性填充材料(CPM)进行表征并填充到色谱柱中,并通过高效液相色谱法评估其对映体分离性能。结果表明,CPMs显示出均匀的表面形态和核-壳结构。在正相和反相模式下可以有效地分离各种类型的手性化合物。此外,氯仿和四氢呋喃作为流动相添加剂可以明显提高手性分离过程中的分离度。当用四氢呋喃和氯仿含量高的溶剂系统洗脱时,CPM仍具有良好的手性分离特性,这证明了这种新材料的高耐溶剂性。

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