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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Silica based click-dibenzo-18-crown-6-ether high performance liquid chromatography stationary phase and its application in separation of fullerenes
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Silica based click-dibenzo-18-crown-6-ether high performance liquid chromatography stationary phase and its application in separation of fullerenes

机译:基于二氧化硅的咔哒咔哒-18-Crown-6 - 醚高性能液相色谱固定相及其在富勒烯分离中的应用

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AbstractCrown ether is a type of typical macrocyclic polyether compounds, which can produce strong interactions with cationic species, such as metal ions and protonated amines due to its cavity structure and the strong electronegative effect of heteroatoms on the crown ether ring. In this paper, a type of silica based crown ether stationary phase was prepared by covalently bonding dibenzo-18-crown 6-ether (DBCE) on silica gelviacopper (I) catalyzed azide-alkyne 1,3-dipolar cycloaddition (CuAAC). The tetraazido DBCE was rapidly prepared by bromomethylation and subsequent azido substitution of DBCE. Finally, this key intermediate was covalently bonded to silica beads by click chemistry to get click-DBCE. Its structure was confirmed by FT-IR and elemental analysis, and the structures of all related intermediates were confirmed by NMR, IR and MS spectra. The crown ether based stationary phase showed good chromatography characteristics and column efficiency (up to 43,553 plates m-1theoretical plate number is obtained in the case of fluoranthene) under reverse phase liquid chromatographic (RPLC) model. The primary chromatographic evaluation showed that click-DBCE displayed better chromatography efficiency than commercial C18 stationary phase (THERMO BDS HYPERSIL), when they were applied in the separation of regio-isomers of benzene, polycyclic aromatic hydrocarbons (PAHs) and macrolide pharmaceuticals. Furthermore, this stationary phase could also be used to separate fullerenes under normal phase mode, and in this case, 1-chloronaphthalene was suitable additive for improving chromatographic separation ability.
机译:<![cdata [ 抽象 冠醚是一种典型的大环聚醚化合物,可以产生与阳离子种类的强相互作用,例如金属离子和由于其质子化胺。腔结构和官醚环上杂原子的强电信效应。本文通过在硅胶中共价键合二苯脲-18-冠6 - 醚(DBCE)来制备一种二氧化硅基胰蛋白质醚固定相通过铜(I)催化叠氮化物-alkyne 1,3-偶极环加装(Cuaac)。通过溴甲基化和随后的脂肪替代DBCE迅速制备四razidodBCE。最后,通过点击化学将该关键中间体与二氧化硅珠子共价键合,以便点击-DBCE。通过FT-IR和元素分析证实了其结构,并通过NMR,IR和MS光谱证实了所有相关中间体的结构。基于冠醚的固定相显示出良好的色谱特性和柱效率(最多43,553平板M - 1 在荧光的情况下获得的理论板数)在反向下获得相液相色谱(RPLC)模型。主要色谱评价显示,当蛋白质异构体的分离,多环芳烃(PAHS)和大环内酯药物的分离时,咔哒次数显示比商业C18固定相(Thermo BDS Hypersil)显示出更好的色谱效率。此外,这种固定相也可用于在正常相位模式下分离富勒烯,在这种情况下,1-氯萘是合适的添加剂,用于改善色谱分离能力。

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