Comprehensive Technology Centre, Zhenjiang Customs District PR China, Zhenjiang, 212008, China.
School of Pharmacy, Jiangsu University, Zhenjiang, 212013, China.
Anal Chim Acta. 2024 Nov 15;1329:343247. doi: 10.1016/j.aca.2024.343247. Epub 2024 Sep 14.
Hydrophilic Interaction Liquid Chromatography (HILIC) is an outstanding strategy for the challenging analysis of hydrophilic and polar components. Nevertheless, analysis under HILIC mode typically consumes 70%-95 % acetonitrile with the disadvantage of high analytical costs, being environmentally unfriendly and causing biohazards, which is not in line with the concept of green chromatography. Research has shown that Per Aqueous Liquid Chromatography (PALC) simultaneously emphasizes efficient analytical performance for hydrophilic analytes and green analytical concepts. The development of new PALC stationary phases with superior performance is necessary.
In this paper, silanized silica was sequentially subjected to esterification reaction, polymerization reaction and covalent bonding through five steps to obtain SiO-RHP-AuNPs material, which was prepared as a novel stationary phase for PALC. Comprehensive characterization of the materials by means of Fourier transform infrared spectroscopy, Transmission scanning electron microscope, Elemental analysis and Thermogravimetric analysis showed the successful bonding of the functionalized groups on the original silica. The polymeric stationary phase based on Radix hedysari polysaccharide and Au nanoparticles had higher density of hydroxyl and ester functionalized groups. The Au nanoparticles upgraded their mesoporous structure and thermal stability, providing exceptional chromatographic performance and selectivity for chromatographic analysis. The influence of mobile phase water content, salt concentration, pH and column temperature on the retention behavior was evaluated. The novel Column was found to exhibit a dual mechanism of hydrophobic interactions/ion exchange interactions in a mobile phase with high water content.
The separation efficiency and selectivity of SiO-RHP-AuNPs columns for synthetic pigments and organic acids in PALC mode were superior to those of commercial HILIC and C columns. In addition, a method for the determination of seven active ingredients in Fructus Ligustri Lucidi by SiO-RHP-AuNPs column in PALC mode was developed. The method had good stability, reproducibility and accuracy, which was capable of realizing the quality evaluation of Chinese Materia Medicas.
亲水作用液相色谱(HILIC)是一种出色的策略,可用于分析具有挑战性的亲水和极性成分。然而,在 HILIC 模式下进行分析通常需要 70%-95%的乙腈,其具有分析成本高、不环保且存在生物危害等缺点,不符合绿色色谱学的理念。研究表明,亲水作用整体相色谱(PALC)同时强调了亲水分析物的高效分析性能和绿色分析概念。因此,有必要开发具有更优异性能的新型 PALC 固定相。
本文通过酯化反应、聚合反应和共价键合等五个步骤,将硅烷化硅胶依次进行处理,得到了 SiO-RHP-AuNPs 材料,并将其制备成 PALC 的新型固定相。通过傅里叶变换红外光谱、透射扫描电子显微镜、元素分析和热重分析等手段对材料进行综合表征,表明功能化基团已成功键合到原始硅胶上。基于黄蓍胶多糖和金纳米粒子的聚合物固定相具有更高密度的羟基和酯基官能团。金纳米粒子改善了其介孔结构和热稳定性,为色谱分析提供了卓越的色谱性能和选择性。评估了流动相含水量、盐浓度、pH 值和柱温对保留行为的影响。结果表明,新型色谱柱在高含水量的流动相中表现出疏水相互作用/离子交换相互作用的双重作用机制。
SiO-RHP-AuNPs 柱在 PALC 模式下对合成色素和有机酸的分离效率和选择性优于商业 HILIC 和 C 柱。此外,还建立了 PALC 模式下 SiO-RHP-AuNPs 柱测定女贞子中 7 种活性成分的方法。该方法稳定性好、重现性和准确性高,可实现中药材的质量评价。