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优化溶剂前沿位置提取程序,用于制备用于仪器分析的多组分样品。

Optimization of the procedure of solvent front position extraction for preparation of multi-component sample for instrumental analysis.

机构信息

Department of Physical Chemistry, Medical University of Lublin, Poland.

Department of Physical Chemistry, Medical University of Lublin, Poland.

出版信息

J Chromatogr A. 2020 May 10;1618:460912. doi: 10.1016/j.chroma.2020.460912. Epub 2020 Jan 23.

Abstract

Solvent Front Position Extraction (SFPE) procedure has been recently introduced as a novel concept for multi-component sample preparation. According to the procedure, thin-layer chromatography (TLC) is used to separate the compounds of interest from matrix components, and to focus them into a common zone from which the compounds are extracted and transferred to apparatus for instrumental analysis. In the paper, we investigate different adsorbent types of the chromatographic plates and various mobile phases, including pH of their buffers, in respect of optimization conditions of the SFPE procedure. The research was carried out using a test sample containing 9 compounds characterised by different chemical properties, hence the conclusions from the obtained results can be applied to other multi-component samples. Under the optimal conditions, all target compounds are separated from other compounds (matrix), and evenly distributed along a narrow strip, which is advantageous for their quantitation. The determination results are good, the percentage values of relative error and relative standard deviation do not exceed 6%.

摘要

溶剂前沿位置提取(SFPE)程序最近被引入作为一种用于多组分样品制备的新概念。根据该程序,薄层色谱(TLC)用于将感兴趣的化合物与基质成分分离,并将它们聚焦到一个共同区域,从该区域中提取化合物并转移到用于仪器分析的仪器中。在本文中,我们研究了不同类型的色谱板的吸附剂和各种流动相,包括其缓冲液的 pH 值,以优化 SFPE 程序的条件。该研究使用了一个包含 9 种具有不同化学性质的化合物的测试样品进行,因此,从获得的结果中得出的结论可以应用于其他多组分样品。在最佳条件下,所有目标化合物都与其他化合物(基质)分离,并均匀分布在一条狭窄的条带中,这有利于它们的定量。测定结果良好,相对误差和相对标准偏差的百分比值不超过 6%。

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