Department of Chemistry and Polymer Science , University of Stellenbosch , 7602 Matieland , South Africa.
Anal Chem. 2018 Jun 19;90(12):7626-7634. doi: 10.1021/acs.analchem.8b01480. Epub 2018 Jun 7.
This report addresses the comprehensive analysis of oxidized/functionalized polyethylene waxes according to chemical composition and molar mass by selective chromatographic methods. For the first time, tailored high-temperature interaction chromatography in solvent gradient (HT-SGIC) and thermal gradient (HT-TGIC) modes are used for the chemical composition separation of these materials. Separation protocols are developed using three model wax samples with different degrees of oxidation. For the chromatographic separations polar silica gel is used as the stationary phase. Solvent gradients of decane and cyclohexanone are used in HT-SGIC at 110 °C to separate the bulk waxes into several heterogeneous fractions according to polarity and the type of functionality. Column temperature and gradient manipulation are shown to influence chromatographic resolution and retention. The HT-SGIC investigations are complemented by HT-TGIC separations where a solvent mixture of decane and cyclohexanone is used as the mobile phase in isocratic mode. It is shown that HT-SGIC and HT-TGIC provide different types of separation, however, both are predominantly based on differences in functionality. To provide comprehensive information on chemical composition (functionality) and molar mass, HT-SGIC and HT-TGIC are coupled to HT-SEC, using ortho-dichlorobenzene as the second dimension mobile phase. Clear differences between oxidized and nonoxidized waxes are detected in HT-2D-LC providing comprehensive information on the molecular heterogeneity of these materials.
本报告针对氧化/功能化聚乙烯蜡根据化学组成和摩尔质量进行了全面分析,采用了选择性色谱方法。首次使用定制的高温溶剂梯度(HT-SGIC)和热梯度(HT-TGIC)模式的交互作用色谱法对这些材料进行了化学组成分离。使用三种不同氧化程度的模型蜡样开发了分离方案。对于色谱分离,采用极性硅胶作为固定相。在 110°C 的 HT-SGIC 中使用正十一烷和环己酮的溶剂梯度,根据极性和官能团的类型将块状蜡分离成几个不均匀的馏分。柱温与梯度操作均对色谱分辨率和保留时间产生影响。HT-SGIC 研究通过 HT-TGIC 分离得到补充,其中正十一烷和环己酮的混合物作为流动相在等度模式下使用。结果表明,HT-SGIC 和 HT-TGIC 提供了不同类型的分离,但均主要基于官能团的差异。为了提供化学组成(官能团)和摩尔质量的全面信息,将 HT-SGIC 和 HT-TGIC 与 HT-SEC 耦合,使用邻二氯苯作为第二维流动相。在 HT-2D-LC 中,氧化和非氧化蜡之间存在明显差异,为这些材料的分子异质性提供了全面信息。