Department of Physical Chemistry, Faculty of Pharmacy, Medical University of Lublin, 4a Chodźki Str., 20-093 Lublin, Poland.
Molecules. 2022 Jun 23;27(13):4032. doi: 10.3390/molecules27134032.
In our previous paper we have presented the new prototype equipment and introduced a new analytical technique-high-performance/high-pressure layer electrochromatography (HPLEC), a combination of overpressured-layer chromatography (OPLC) and pressurized planar electrochromatography (PPEC). In this paper, the work of the equipment in various operational modes is investigated. Some difficulties and challenges related to various aspects of separation are discussed. The OPLC and HPLEC techniques are compared in terms of selectivity and performance. The results show that our equipment can be successfully used for singe- and multichannel OPLC and HPLEC separations in various sample application and detection modes. It includes the high-throughput, multichannel, and fully automated online separation of multiple samples simultaneously. The equipment allows for the independent optimization of various operational parameters. HPLEC combines the advantages of column/capillary and planar separation techniques while overcoming their limitations. It also combines the advantages and overcomes the drawbacks of OPLC and PPEC. It provides hydrodynamic flow of the mobile phase, irrespective of the voltage used and/or the mobile phase composition. Thus, any optimization of the composition and the voltage can be used independently. Both can be used to obtain the required selectivity of separation. The voltage can be used to facilitate the mobile phase flow and accelerate the analysis.
在我们之前的论文中,我们展示了新的原型设备,并介绍了一种新的分析技术——高效/高压层电色谱(HPLEC),它是加压层色谱(OPLC)和加压平面电色谱(PPEC)的组合。在本文中,我们研究了设备在各种工作模式下的工作情况。讨论了与分离的各个方面相关的一些困难和挑战。从选择性和性能方面对 OPLC 和 HPLEC 技术进行了比较。结果表明,我们的设备可成功用于单通道和多通道 OPLC 和 HPLEC 分离,可在各种样品进样和检测模式下使用。它包括高通量、多通道和全自动在线同时分离多个样品。设备允许对各种操作参数进行独立优化。HPLEC 结合了柱/毛细管和平板分离技术的优点,同时克服了它们的局限性。它还结合了 OPLC 和 PPEC 的优点并克服了它们的缺点。它提供了与所使用的电压和/或流动相组成无关的流动相的流体动力学流动。因此,可以独立地对组成和电压进行任何优化。两者都可用于获得所需的分离选择性。可以使用电压来促进流动相的流动并加速分析。