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A Novel Chip Device Based on Wired Capillary Packed with High Performance Polymer-based Monolith for HPLC: Reproducibility in Preparation Processes to Obtain Long Columns

机译:一种基于填充有高性能聚合物基整体填料的有线毛细管的新型芯片装置:制备过程中可重复性以获得长柱

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This report describes the development of novel wired chip devices for μ-HPLC analyses. The monolithic capillary column to be wired was prepared using a tri-functional epoxy monomer, tris(2,3-epoxypropyl)isocyanurate with a diamine, 4-[(4-aminocyclohexyl)methyl]cyclohexylamine. The prepared column was evaluated by SEM observation of the sectional structure of column and μ-HPLC. In addition, the reproducibility in the preparation of long capillary columns having nearly 1 m length was extensively examined for applications of novel wired chip devices. The authors demonstrated that the monolithic structure of the prepared long capillary could be finely controlled under the strictly maintained operational conditions and thus the relative standard deviation (RSD) of the column properties such as the number of theoretical plates, retention factor, and permeability could be well controlled to become less than 10%. Furthermore, the wired chip device column showed that its high performance was kept even after chip preparation.
机译:该报告描述了用于μ-HPLC分析的新型有线芯片设备的开发。使用三官能环氧单体三(2,3-环氧丙基)异氰脲酸酯与二胺,4-[((4-氨基环己基)甲基]环己胺)制备要连接的整体毛细管柱。通过SEM观察柱的截面结构和μ-HPLC评价所制备的柱。另外,对于新颖的有线芯片装置的应用,广泛研究了制备具有近1m长的长毛细管柱的可再现性。作者证明,在严格维持的操作条件下,可以很好地控制制备的长毛细管的整体结构,因此可以使色谱柱性能的相对标准偏差(RSD)(例如理论塔板数,保留因子和渗透率)达到受到很好的控制,变得不到10%。此外,有线芯片设备专栏表明,即使在准备芯片后仍能保持其高性能。

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