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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Ground, sieved, and C18 modified monolithic silica particles for packing material of microcolumn high-performance liquid chromatography
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Ground, sieved, and C18 modified monolithic silica particles for packing material of microcolumn high-performance liquid chromatography

机译:研磨,筛分和C18改性的整体硅胶颗粒,用于微柱高效液相色谱的填充材料

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摘要

We here report a new type of stationary phase for microcolumns. C18 modified silica monolith particles were prepared by grinding and sieving the silica monolith followed by C 18 modification and end-capping, and were used as packing material. Ground silica monolith particles were not spherical but irregular with some residual monolithic network structure. The separation efficiency of the stationary phase made of sieved monolith particles (5-10 mu m) was better than that of the stationary phase made of unsieved particles. The microcolumn packed with the sieved C18 ground monolith particles (5-10 mu m) showed quite good separation efficiency (height equivalent to theoretical plate, HETP, as low as 15 mu m) and it was even superior to the microcolumn packed with a commercial spherical 5 mu m C 18 stationary phase. The column pressure drop of C 18 monolith particles was about two-third of that of the commercial spherical C18 phase. The preparation method of C18 stationary phase with ground and sieved silica monolith particles presumably suggests advantages of simplicity and convenience in modification and washing procedures compared to bulk silica monolith. It also showed both improved separation efficiency and low back pressure. (c) 2007 Elsevier B.V. All rights reserved.
机译:我们在这里报告了一种新型的微柱固定相。通过研磨和筛分二氧化硅整料,然后进行C 18改性和封端来制备C18改性的二氧化硅整料颗粒,并将其用作填充材料。磨碎的二氧化硅整体颗粒不是球形,而是不规则的,带有一些残留的整体网络结构。由筛分的整料颗粒(5-10μm)制成的固定相的分离效率优于由未筛分的颗粒制成的固定相的分离效率。筛分的C18磨碎的整料颗粒(5-10μm)填充的微柱显示出相当好的分离效率(高度相当于理论塔板,HETP,低至15μm),甚至优于商业包装的微柱球形5μm C 18固定相。 C 18整体颗粒的柱压降约为商品球形C18相的三分之二。与块状二氧化硅整料相比,用研磨的和筛分的二氧化硅整料颗粒制备C18固定相的方法大概表明在改性和洗涤过程中具有简便性。它还显示出改进的分离效率和低背压。 (c)2007 Elsevier B.V.保留所有权利。

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