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在毛细管中原位制备 3D COF-300,通过开管毛细管电色谱分离芳香族化合物。

In situ fabrication of 3D COF-300 in a capillary for separation of aromatic compounds by open-tubular capillary electrochromatography.

机构信息

State Key Laboratory of Applied Organic Chemistry, College of Chemistry and Chemical Engineering, Lanzhou University, Lanzhou, 730000, Gansu, China.

Key Laboratory of Nonferrous Metal Chemistry and Resources Utilization of Gansu Province, Lanzhou University, Lanzhou, 730000, Gansu, China.

出版信息

Mikrochim Acta. 2020 Mar 16;187(4):233. doi: 10.1007/s00604-020-4196-9.

Abstract

Two-dimensional (2D) COFs have been successfully applied for various applications, such as capillary electrochromatography (CEC). Compared with 2D COFs, three-dimensional (3D) COFs have higher surface area and lower density, which should have superior potential as the separation medium in CEC. However, the 3D COFs on the inner wall of capillary is hard to fabricate in situ. Up to date, the application of 3D COFs in open-tubular capillary electrochromatography (OT-CEC) is still considered a challenge. For the first time the COF-300-coated capillary was prepared by in situ growth (COF-300 was made from terephthalaldehyde and tetra-(4-anilyl)-methane) on OT-CEC. Benzene, methylbenzene, styrene, ethylbenzene, naphthalene, 1-methylnaphthalene, and propylbenzene were used to evaluate the performance of the COF-300-coated capillary by OT-CEC. For three consecutive runs, the intraday relative standard deviations (RSDs) of migration time and peak areas were 0.1-0.4% and 2.5-8.3%, respectively. The interday RSDs of migration time and peak areas were 0.2-0.5% and 1.0-10.8%, respectively. Five groups of aromatic co mpounds were used to further study the separation mechanism, which indicated that hydrophobic interaction and size selection interaction are the main factors. It should be noted that the COF-300-coated capillary can be used for more than 140 runs with no observable changes of the separation efficiency. Graphical abstract The 3D COF-300-coated capillary was prepared by in situ growth for OT-CEC. Six groups of aromatic compounds were separated by 3D COF-300-coated capillary. Size selection and hydrophobic interaction affect the migration time of analytes.

摘要

二维(2D)COF 已成功应用于各种领域,如胶束电动色谱(MEKC)。与 2D COF 相比,三维(3D)COF 具有更高的比表面积和更低的密度,作为毛细管电色谱(CEC)的分离介质具有更大的潜力。然而,3D COF 在内壁的原位合成具有一定的挑战性。迄今为止,3D COF 在开管毛细管电色谱(OT-CEC)中的应用仍被认为是一个挑战。首次通过原位生长(COF-300 由对苯二甲醛和四(4-苯胺基)甲烷制成)在 OT-CEC 上制备 COF-300 涂覆的毛细管。采用苯、甲苯、苯乙烯、乙苯、萘、1-甲基萘和丙苯来评价 COF-300 涂覆毛细管的性能。在连续三次运行中,迁移时间和峰面积的日内相对标准偏差(RSD)分别为 0.1-0.4%和 2.5-8.3%。迁移时间和峰面积的日间 RSD 分别为 0.2-0.5%和 1.0-10.8%。五组芳香族化合物进一步研究了分离机制,表明疏水性相互作用和尺寸选择相互作用是主要因素。需要注意的是,COF-300 涂覆的毛细管可用于 140 多次以上的运行,而分离效率无明显变化。

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