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Nitrogen-doping to enhance the separation selectivity of glucose-based carbon dots-modified silica stationary phase for hydrophilic interaction chromatography

机译:氮气掺杂,增强葡萄糖基碳点改性二氧化硅固定相进行亲水性相互作用色谱法的分离选择性

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摘要

Doping is often used to alter or improve the properties of nanomaterials. In this work, a novel glucose-based nitrogen-doped carbon dots (Glc-NCDs)-bonded silica stationary phase (Sil-Glc-NCDs) was synthesized and characterized carefully. Glc-NCDs were prepared using glucose and aspartic acid as carbon and nitrogen sources, and then grafted on silica surface via isocyanatopropyl as linker using deep eutectic solvents as reaction medium. The synthesis was confirmed by elemental analysis, Fourier transform infrared spectroscopy and microscopic imaging techniques. And then Sil-Glc-NCDs were packed in the stainless columns for hydrophilic interaction chromatography (HILIC). Due to the synergistic effect between the functional groups of doped carbon dots, SilGlc-NCDs column showed enhanced separation selectivity compared with previous non-doped Sil-Glc-CDs column. Sil-Glc-NCDs column can be used for separation of base, nucleosides and antibiotics etc. This column was successfully applied to determine the content of roxithromycin in the capsule, which was found that the concentration was 2.45 mg/mL.
机译:掺杂通常用于改变或改善纳米材料的性质。在这项工作中,合成并仔细合成了一种新的葡萄糖基氮掺杂的碳点(GLC-NCDS) - 粘合的二氧化硅(SIL-GLC-NCD)。使用葡萄糖和天冬氨酸作为碳和氮源制备GLC-NCD,然后通过异氰酸丙基作为反应介质的深共晶溶剂作为接头接枝在二氧化硅表面上。通过元素分析,傅里叶变换红外光谱和微观成像技术证实了合成。然后将SIL-GLC-NCD包装在不锈钢柱中,用于亲水相互作用色谱(HILIC)。由于掺杂碳点的官能团之间的协同效应,与先前的非掺杂SIL-GLC-CDS柱相比,SilGlC-NCDS柱显示出增强的分离选择性。 SIL-GLC-NCDS柱可用于分离碱,核苷和抗生素等。成功地应用该塔以确定胶囊中罗西霉素的含量,这发现浓度为2.45mg / ml。

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