首页> 外文期刊>Journal of liquid chromatography and related technologies >Use of video densitometry and scanning densitometry to study an impact of silica gel and L-arginine on the retention of ibuprofen and naproxen in TLC systems
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Use of video densitometry and scanning densitometry to study an impact of silica gel and L-arginine on the retention of ibuprofen and naproxen in TLC systems

机译:使用视频光密度法和扫描光密度法研究硅胶和L-精氨酸对TLC系统中布洛芬和萘普生保留的影响

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In our earlier articles, we demonstrated the phenomenon of the two-dimensional enantioseparation of the selected 2-arylpropionic acids (2-APAs) in the onedimensional thin-layer chromatographic mode, yet our measuring results originated from the classical scanning densitometry only. A basic precondition of the discussed phenomenon is the omnipresence of the two-dimensional effective diffusion in planar chromatography. However, one should anticipate an action of the two different-and apparently chiral -elements, one responsible for the vertical enantioseparation (in the direction of the mobile phase migration) and another one responsible for the horizontal enantioseparation (inducing deviation of the chiral analytes' migration tracks from the vertical). In the investigated chromatographic systems two chiral elements are in fact present. One chiral element is the microcrystal line silica gel layer and the other one is L-arginine as the impregnating chiral selector. Upon our earlier results originating from the scanning densitometry, it could be deduced that the crystalline chirality of silica gel is responsible for the horizontal enantioseparation, and the molecular chirality Of L-arginine is responsible for the vertical separation. In this study, we confirm our earlier findings in a more immediate way, using the flatbed video densitometry to record the pictures of the whole chromatograms and also those of the individual chromatographic spots of ibuprofen and naproxen. We combine these results with the data obtained from the classical scanning densitometry to monitor the discussed enantioseparations by means of the concentration profiles of the respective antimers. Combination of the results originating from the video and the scanning densitometry allows a deep enough insight in the chromatographic behavior of the two selected 2-APAs on the plain silica gel layers and on those impregnated with L-arginine.
机译:在我们较早的文章中,我们以一维薄层色谱模式展示了所选2-芳基丙酸(2-APA)的二维对映体分离现象,但我们的测量结果仅源自经典的扫描光密度法。讨论的现象的基本前提是在平面色谱中无处不在的二维有效扩散。但是,应该预料到两种不同的表面手性元素的作用,一种负责垂直对映体的分离(沿流动相迁移的方向),另一种负责水平对映体的分离(引起手性分析物的偏离)。垂直方向的迁移轨迹)。在所研究的色谱系统中,实际上存在两个手性元素。一种手性元素是微晶线硅胶层,另一种是L-精氨酸作为浸渍手性选择剂。根据我们来自扫描光密度法的较早结果,可以推断出硅胶的手性是水平对映体分离的原因,而L-精氨酸的分子手性是垂直分离的原因。在这项研究中,我们用平板视频光密度法记录了整个色谱图的图像以及布洛芬和萘普生的各个色谱点的图像,从而以更直接的方式证实了我们先前的发现。我们将这些结果与从经典扫描光密度法获得的数据结合起来,以通过各自的反聚物的浓度曲线监测讨论的对映体分离。来自视频和扫描光密度法的结果相结合,可以使人们深入了解普通硅胶层和浸渍L-精氨酸的两种2-APA的色谱行为。

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