College of Chemistry and Chemical Engineering, Henan Key Laboratory of Function-Oriented Porous Materials, Luoyang Normal University, Luoyang 471934, P. R. China.
Liaoning Province Professional and Technical Innovation Center for Fine Chemical Engineering of Aromatics Downstream, School of Petrochemical Engineering, Shenyang University of Technology, Liaoyang, 111003, Liaoning, P. R. China.
J Chromatogr A. 2022 May 24;1671:463008. doi: 10.1016/j.chroma.2022.463008. Epub 2022 Mar 29.
Pillar[n]arenes possess highly symmetrical and rigid pillar-shaped architecture with π-electron rich cavity that afford their reliable host-guest recognition interactions towards matched guests. In this work, a novel amphiphilic pillar[5]arene (P5A-C10-2NH) was designed, synthesized and employed as the stationary phase for capillary gas chromatography. To date, they have not been reported in the field of chromatography. The P5A-C10-2NH capillary column (10 m × 0.25 mm i.d.) was prepared by static coating method. Its capillary column exhibited moderate polarity and column efficiency of 2265 plates/m determined by naphthalene at 120 °C. As evidenced, the P5A-C10-2NH column achieved advantageous separation performance for a mixture of 24 analytes of diverse types and exhibited different chromatographic selectivity from two pillar[5]arene derivatives columns and commercial HP-35 column with 35%-phenyl-methylpolysiloxane. Moreover, the P5A-C10-2NH column baseline resolved more than a dozen positional and cis-trans isomers. Furthermore, the separation mechanism of P5A-C10-2NH column was discussed by quantum chemical calculations. In addition, the P5A-C10-2NH column had high thermal stability and excellent separation repeatability 0.01-0.04% for run-to-run, 0.03-0.17% for day-to-day and 3.2-3.9% for column-to-column. The special amphiphilic structure and high resolution for various analytes reveal the good potential of pillararenes as a new class of stationary phases for chromatographic analyses. Moreover, the TPG column achieved improved thermal stability over the GIL column and excellent repeatability.
多环芳烃具有高度对称和刚性的柱状结构,具有富π电子的空腔,使其能够与匹配的客体进行可靠的主客体识别相互作用。在这项工作中,设计、合成了一种新型两亲性多环芳烃(P5A-C10-2NH),并将其用作毛细管气相色谱的固定相。迄今为止,它们在色谱领域尚未有报道。通过静态涂层法制备了 P5A-C10-2NH 毛细管柱(10 m×0.25 mm i.d.)。在 120°C 下,用萘测定,其毛细管柱表现出中等极性和 2265 块/m 的柱效。事实证明,该 P5A-C10-2NH 柱对 24 种不同类型的分析物混合物具有有利的分离性能,并表现出与两种多环芳烃衍生物柱和具有 35%-苯基-甲基聚硅氧烷的商业 HP-35 柱不同的色谱选择性。此外,该 P5A-C10-2NH 柱基线分离了十几个位置和顺反异构体。此外,通过量子化学计算讨论了 P5A-C10-2NH 柱的分离机理。此外,P5A-C10-2NH 柱具有较高的热稳定性和出色的分离重现性,运行间为 0.01-0.04%,日间为 0.03-0.17%,柱间为 3.2-3.9%。特殊的两亲性结构和对各种分析物的高分辨率显示了多环芳烃作为色谱分析新型固定相的良好潜力。此外,TPG 柱的热稳定性优于 GIL 柱,且重现性出色。