Key Laboratory of Chemistry of Northwestern Plant Resources and Key Laboratory for Natural Medicine of Gansu Province, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, China.
University of Chinese Academy of Sciences, Beijing 100049, China.
Anal Chem. 2021 Dec 7;93(48):16017-16024. doi: 10.1021/acs.analchem.1c03514. Epub 2021 Nov 24.
We reporte the double-layer hydrogel-coated mesoporous silica material as a new stationary phase for liquid chromatography. The method of combining physical coating and chemical coating was to apply hydrogel coating on the surface of silica, and finally, a new type of liquid chromatography stationary phase with in situ coating of the functional hydrogel on silica was obtained. This hydrogel-functionalized liquid chromatography stationary phase also exhibits a certain temperature responsiveness. Experimental results show that this temperature response is mainly due to changes in the hydrogen bonding between the stationary phase and the analyte at different temperatures in the column oven, which leads to changes in retention behavior. The hydrogel-coated mesoporous silica microspheres showed excellent selectivity for many polar analytes. An excellent column efficiency was obtained (139 000 plates/m for terephthalic acid) after optimization of chromatographic conditions. In addition to rapid separation of some analytes, this new hydrogel stationary phase also has certain superiority in chromatographic performance compared with other new excellent liquid chromatography stationary phases functioned by three-dimensional cross-linking systems. The important thing is that this strategy is relatively easy to prepare a new stationary phase with different properties.
我们报道了一种双层水凝胶涂层介孔硅材料作为液相色谱的新型固定相。该方法采用物理涂层和化学涂层相结合的方法,在硅胶表面涂覆水凝胶,最终得到一种在硅胶上原位涂覆功能水凝胶的新型液相色谱固定相。这种功能化的水凝胶液相色谱固定相也表现出一定的温度响应性。实验结果表明,这种温度响应主要是由于柱温箱内不同温度下固定相与分析物之间氢键的变化,导致保留行为发生变化。水凝胶涂层介孔硅微球对许多极性分析物表现出优异的选择性。经过优化色谱条件,获得了优异的柱效(对苯二甲酸为 139000 板/m)。除了快速分离一些分析物外,与其他通过三维交联体系功能化的新型优异液相色谱固定相相比,这种新型水凝胶固定相在色谱性能方面也具有一定的优势。重要的是,这种策略相对容易制备具有不同性能的新型固定相。