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新型表面多孔颗粒的性能特点。

Performance characteristics of new superficially porous particles.

机构信息

Advanced Materials Technology, Inc., 3521 Silverside Rd., Ste. 1-K, Quillen Bldg, Wilmington, DE 19810, USA.

出版信息

J Chromatogr A. 2012 Oct 5;1258:76-83. doi: 10.1016/j.chroma.2012.08.036. Epub 2012 Aug 17.

Abstract

Superficially porous particles (also called Fused-Core, core shell or porous shell particles) show distinct advantages over comparable totally porous particles for separating small molecules. Columns of Fused-Core particles exhibit very high efficiency because of superior eddy dispersion properties (smaller van Deemter A term). The efficiency for columns of 2.7 μm Fused-Core particles actually rivals that for sub-2 μm totally porous particles with only about one-half the back pressure. These Fused-Core particles show special advantages with larger molecules for fast separations at high mobile phase velocities because of superior mass transfer (kinetic) properties (smaller van Deemter C term). This report describes the effect of different particle size and porous shell thicknesses on chromatographic performance for Fused-Core particles. Particle characteristics can significantly affect factors of separation importance. For example, the reduced plate height of packed columns is affected by particle diameter. Interestingly, larger Fused-Core particles show smaller reduced plate heights than smaller Fused-Core particles. Also, porous shell thickness has a strong effect on solute retention as well as separation efficiency, and particle surface area has a direct influence on sample loading characteristics. Fused-Core particles with a wide range of physical characteristics have been developed that allows the preparation of stable, efficient packed columns.

摘要

表面多孔颗粒(也称为核壳型、核壳或多孔壳颗粒)在分离小分子方面相对于可比的全多孔颗粒具有明显优势。核壳型颗粒的色谱柱由于具有优越的涡流扩散性能(较小的 van Deemter A 项),因此具有非常高的效率。实际上,对于 2.7μm 核壳型颗粒的色谱柱,其效率可与亚 2μm 的全多孔颗粒相媲美,而背压仅为其一半。这些核壳型颗粒在较大分子的快速分离中具有特殊优势,因为其传质(动力学)性能优越(较小的 van Deemter C 项)。本报告描述了不同粒径和多孔壳厚度对核壳型颗粒色谱性能的影响。颗粒特性会显著影响分离的重要因素。例如,填充柱的塔板高度会受到粒径的影响。有趣的是,较大的核壳型颗粒比较小的核壳型颗粒显示出更小的塔板高度。此外,多孔壳厚度对溶质保留和分离效率有很强的影响,而颗粒表面积对样品加载特性有直接影响。已经开发出具有广泛物理特性的核壳型颗粒,可制备稳定、高效的填充柱。

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