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Polydopamine assisted liquid phase deposition for preparation of zirconia coated column in capillary electrophoresis

机译:聚二胺辅助液相沉积,用于制备毛细管电泳中的氧化锆涂层柱

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A zirconia coated column was prepared for capillary electrophoresis separation based on a mussel adhesive protein inspired polydopamine coating for the first time. Polydopamine, formed by the spontaneous oxidative polymerization of dopamine under alkaline conditions, was used to immobilize zirconia onto the inner surface of a capillary via a liquid phase deposition process. During the formation of zirconia, the outer hydroxyl groups of the polydopamine layer can chelate with Zr4+ to boost nucleation and growth of zirconia. The existence of the zirconia coating was successfully confirmed by using X-ray photoelectron spectroscopy and a comparative study of electroosmotic flow. Furthermore, the zirconia coated capillary was applied in the separation of inorganic anions and alkaloids and baseline separations were achieved with good reproducibility and stability. Therefore, the presented method is anticipated to be a promising preparation technology for metal oxide coated columns, characterized by a simple preparation process, mild reaction conditions and high efficiency.
机译:基于贻贝粘合剂蛋白首次启发的聚二胺涂层,制备氧化锆涂层柱进行毛细管电泳分离。通过在碱性条件下通过多巴胺的自发氧化聚合形成的聚二胺用于将氧化锆固定到通过液相沉积方法的毛细管的内表面上。在形成氧化锆期间,聚二胺层的外羟基可以用Zr4 +螯合以提高氧化锆的成核和生长。通过使用X射线光电子能谱和电渗流的比较研究成功地确认了氧化锆涂层的存在。此外,氧化锆涂覆的毛细血管被施用于无机阴离子的分离,并且通过良好的再现性和稳定性来实现生物碱和基线分离。因此,预计将提出的方法是金属氧化物涂层柱的有希望的制备技术,其特征在于简单的制备方法,反应条件温和的反应条件和高效率。

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