Jiang Ping, Lucy Charles A
Department of Chemistry, Gunning/Lemieux Chemistry Centre, University of Alberta, Edmonton, AB T6G 2G2, Canada.
Department of Chemistry, Gunning/Lemieux Chemistry Centre, University of Alberta, Edmonton, AB T6G 2G2, Canada.
J Chromatogr A. 2016 Mar 11;1437:176-182. doi: 10.1016/j.chroma.2016.02.014. Epub 2016 Feb 12.
Charge-transfer and hypercrosslinked polystyrene phases offer retention and separation for polycyclic aromatic hydrocarbons (PAHs) and thus have potential for petroleum analysis. The size, shape and planarity selectivity for PAH standards on charge-transfer (DNAP column) and hypercrosslinked polystyrene (HC-Tol and 5HGN columns) phases are different under normal phase liquid chromatography (NPLC). The HC-Tol column behaves like a conventional NPLC column with low retention of PAHs. Retention of PAHs on the DNAP and 5HGN are strong and increases with the number of aromatic rings. The main retention mechanism is through π-π interactions and dipole-induced dipole interaction. Thermodynamics indicates that the retention mechanism of PAHs remains unchanged over the temperature range 20-60°C. In addition, on either DNAP or 5HGN column, both linear and bent PAHs are retained through the same mechanism. But DNAP possesses smaller π-π interaction and higher planarity selectivity than 5HGN for PAHs. This is suggestive that DNAP interacts with PAHs through a disordered phase arrangement, while 5HGN behaves as an ordered adsorption phase.
电荷转移和超交联聚苯乙烯固定相可对多环芳烃(PAHs)进行保留和分离,因此在石油分析方面具有潜力。在正相液相色谱(NPLC)条件下,电荷转移固定相(DNAP柱)和超交联聚苯乙烯固定相(HC-Tol柱和5HGN柱)对PAH标准品的尺寸、形状和平面度选择性有所不同。HC-Tol柱的表现类似于传统的NPLC柱,对PAHs的保留能力较低。PAHs在DNAP柱和5HGN柱上的保留能力较强,且随着芳环数量的增加而增强。主要的保留机制是通过π-π相互作用和偶极诱导偶极相互作用。热力学表明,在20-60°C的温度范围内,PAHs的保留机制保持不变。此外,在DNAP柱或5HGN柱上,直链和弯曲的PAHs都是通过相同的机制被保留的。但对于PAHs,DNAP的π-π相互作用较小,平面度选择性高于5HGN。这表明DNAP通过无序的相排列与PAHs相互作用,而5HGN表现为有序的吸附相。