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Narrow bore post column derivatisation assays via reaction flow chromatography

机译:通过反应流相色谱法测定窄孔后柱衍生物测定

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摘要

This study highlights the capability to conduct a post column derivatisation (PCD) process with a narrow bore, low volume column. A reaction flow (RF) HPLC column (30 mm x 2.1 mm internal diameter (i.d.), 3 mu m particle diameter) enabled the selective detection of phenols for both a simple standard mixture and a complex sample represented by green tea. The resolving power and sensitivity obtained were similar to an analytical scale (4.6 mm i.d.) RF HPLC column of the same format. However, the baseline noise experienced was higher when the assay was scaled down from the RF 4.6 mm i.d. to the RF 2.1 mm i.d. narrow bore column. The PCD mixing and reaction speed inside the RF column outlet (frit and head-fitting design) enabled the coupling of PCD protocols with "UHPLC-type" low volume columns and systems without significant loss in separation performance. In comparison to a conventional analytical scale PCD approach the scaled down narrow bore RF approach demonstrated 40 times greater sensitivity in terms of S/N. Scaled down PCD is vital for decreased consumption and cost without significant loss in separation performance.
机译:本研究强调了通过窄孔,低体积柱进行柱衍生体(PCD)过程的能力。反应流(RF)HPLC柱(30mm×2.1mm内径(即,3μm粒径)使得能够选择性检测单纯标准混合物和由绿茶代表的复杂样品。所获得的分辨率和灵敏度类似于相同格式的分析尺度(4.6mm i.d.)rf HPLC列。然而,当测定从RF 4.6 mm缩小时,所经历的基线噪声更高。到rf 2.1 mm i.d.狭窄的钻孔柱。 RF柱出口(玻璃料和头部拟合设计内的反应速度)使PCD协议的耦合与“UHPLC型”低容量柱和系统的耦合,而不会在分离性能下显着损失。与传统的分析规模PCD方法相比,缩小的窄孔RF方法在S / N方面表现出40倍的灵敏度。缩小PCD对于降低的消耗和成本,对于分离性能的显着损失至关重要。

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