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首页> 外文期刊>Electrophoresis: The Official Journal of the International Electrophoresis Society >Silica spheres coated with C18-modified gold nanoparticles for capillary LC and pressurized CEC separations.
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Silica spheres coated with C18-modified gold nanoparticles for capillary LC and pressurized CEC separations.

机译:涂有C18修饰金纳米颗粒的硅胶球,用于毛细管LC和加压CEC分离。

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摘要

Nonporous monodispersed silica spheres of 1.3 microm were coated with gold nanoparticles (AuNPs) and subsequently coated with n-octadecanethiol. By transmission electron microscopy analysis, the average diameter of the AuNPs on the silica spheres was determined to be 12 nm. The chromatographic and electrochromatographic properties of self-assembled n-octadecanethiol AuNP-coated silica microspheres (C18-AuNPs-SiO2) were investigated using a group of nonpolar PAHs. The stationary phase appears to display a characteristic reversed-phase behavior. Higher separation efficiency and shorter separation times were obtained using pressurized CEC (pCEC) compared with capillary LC (CLC). A maximum column efficiency of about 2.5x10(5) plates per meter and less than 18 min separation time for benzene were obtained in pCEC while only 66 507 plates per meter and an analysis time of nearly 100 min were observed in CLC mode. A chemical stability test of the C18-AuNPs-SiO2 stationary phase under extremely high and low pH conditions demonstrated that it is stable at pH 12 and 1 for at least 60 h. The results confirm that C18-AuNPs-SiO2 possesses a high rigidity to withstand high packing pressures and can be used as a good stationary phase for CLC and pCEC.
机译:用金纳米颗粒(AuNPs)涂覆1.3微米的无孔单分散二氧化硅球,然后涂覆正十八烷硫醇。通过透射电子显微镜分析,在二氧化硅球上的AuNP的平均直径被确定为12nm。使用一组非极性PAH,研究了自组装的正十八烷硫醇AuNP包覆的二氧化硅微球(C18-AuNPs-SiO2)的色谱和电色谱性能。固定相似乎显示出特征性的反相行为。与毛细管LC(CLC)相比,使用加压CEC(pCEC)可获得更高的分离效率和更短的分离时间。在pCEC中获得的最大色谱柱效率为每米约2.5x10(5)板,并且苯的分离时间少于18分钟,而在CLC模式下仅观察到每米66507板和近100分钟的分析时间。 C18-AuNPs-SiO2固定相在极高和极低pH条件下的化学稳定性测试表明,它在pH 12和1下稳定至少60 h。结果证实,C18-AuNPs-SiO2具有高的刚性,可以承受较高的堆积压力,并且可以用作CLC和pCEC的良好固定相。

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