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Open-tubular Capillary Electrochromatography with Janus Structured Au-Fe3O4 Nanoparticles Coating as Stationary Phase

机译:与Janus结构化Au-Fe 3 O 4 纳米粒子涂层的牙线毛细管电粒图为固定相

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A novel Au-Fe_(3)O_(4) nanoparticles-based capillary column was fabricated by magnetic approach for open-tubular capillary electrochromatography (OT-CEC). The bifunctional dumbbell-like Janus Au-Fe_(3)O_(4) nanoparticles (Au-Fe_(3)O_(4) NPs) were prepared through a hydrothermal synthesis strategy, and the morphology was characterized by transmission electron microscopy (TEM). Multilayers Au-Fe_(3)O_(4) NPs were easily coated onto the inner surface of silica capillary by an external magnetic field to generate an Au-Fe_(3)O_(4) NPs-based column. Compared with a bare capillary, the modified surface exhibited more stable and suppressed electroosmotic mobility. The column showed good separation efficiency for neutral analytes in the OT-CEC separation mode, with theoretical plate numbers of up to 79705 per meter for naphthalene. The successful separation of dihydroxy benzene isomers and proteins demonstrated that the column exhibits a reasonable separation performance. The reproducibility of the Au-Fe_(3)O_(4) NPs capillary was studied, with relative standard deviations (RSD) for day-to-day and column-to-column less than 1 and 1.75%, respectively.
机译:通过用于开牙毛细管电粒度(OT-CEC)的磁法制备基于新型的Au-Fe_(3)O_(4)纳米颗粒的毛细管柱。通过水热合成策略制备双功能哑铃Janus Au-Fe_(3)O_(4)纳米颗粒(Au-Fe_(3)o_(4)nps),通过透射电子显微镜(TEM)表征了形态学。多层AU-FE_(3)O_(4)NPS通过外部磁场容易地涂覆到二氧化硅毛细管的内表面上,以产生AU-FE_(3)O_(4)基于NPS的柱。与裸毛细管相比,改性表面表现出更稳定且抑制的电渗透迁移率。该柱对OT-CEC分离模式中中性分析物的中性分析物呈良好的分离效率,具有萘的理论板数,可为每米高达79705。二羟基苯异构体和蛋白质的成功分离证明柱子表现出合理的分离性能。研究了Au-Fe_(3)o_(4)NPS毛细管的再现性,分别具有相对标准偏差(RSD),分别为小于1和1.75%的柱塔和柱。

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