Department of Chemistry, Iowa State University, Ames, IA 50011, USA.
Department of Chemistry, University of South Alabama, Mobile, Alabama 36688, USA.
J Chromatogr A. 2019 Oct 25;1604:460466. doi: 10.1016/j.chroma.2019.460466. Epub 2019 Aug 19.
Ionic liquids (ILs) are well-known in the field of separation science for their unique selectivity when used as stationary phases in gas chromatography (GC). While a significant amount of knowledge has been attained in correlating structural features of an IL to separation selectivity, developments in producing IL-based stationary phases suitable for high temperature GC studies have lagged behind. Column bleed is a result of the stationary phase undergoing volatilization/decomposition at high temperatures and is undesirable in separations coupled to GC/MS. It has been well-known that traditional classes of ILs with long alkyl side chain substituents are susceptible to Hofmann elimination at elevated temperatures. In this study, a new class of IL stationary phases containing perarylated cations exhibiting improved thermal stability are introduced. These ILs were used to prepare wall-coated open tubular columns with high column efficiency and produced very low bleed at temperatures up to 350 °C. Their unique chemical structures provide stronger π-π interactions compared to many commercially-available stationary phases. To exploit the unique interactions provided by these stationary phases, the separation of two classes of environmentally hazardous aromatic compounds, namely, polycyclic aromatic hydrocarbons (PAHs) and polychlorinated biphenyls (PCBs), was examined. Both classes of compounds contain structural isomers with high boiling points that are often challenging to separate. The perarylated sulfonium and phosphonium IL-based stationary phases exhibited excellent thermal stability as well as unique selectivity toward isomers of PAHs as well as toxic PCB analyte pairs.
离子液体(ILs)在分离科学领域因其在气相色谱(GC)中用作固定相时的独特选择性而广为人知。虽然已经获得了大量关于将 IL 的结构特征与其分离选择性相关联的知识,但生产适合高温 GC 研究的基于 IL 的固定相的发展却落后了。柱流失是由于固定相在高温下挥发/分解而产生的,在与 GC/MS 耦合的分离中是不理想的。众所周知,具有长烷基侧链取代基的传统 IL 类在高温下容易发生 Hofmann 消除。在这项研究中,引入了一类新型的含芳基化阳离子的 IL 固定相,其热稳定性得到了改善。这些 IL 用于制备具有高柱效的壁涂开管柱,在高达 350°C 的温度下产生的柱流失非常低。它们独特的化学结构提供了比许多市售固定相更强的π-π相互作用。为了利用这些固定相提供的独特相互作用,考察了两类环境危害性芳香族化合物,即多环芳烃(PAHs)和多氯联苯(PCBs)的分离。这两类化合物都含有具有高沸点的结构异构体,通常很难分离。基于芳基化的硫翁和磷翁 IL 的固定相表现出优异的热稳定性以及对 PAHs 异构体以及有毒 PCB 分析物对的独特选择性。