School of Chemistry and Chemical Engineering, Huaiyin Normal University, Huai'an 223000, China; Key Laboratory of Chemistry of Northwestern Plant Resources and Key Laboratory for Natural Medicine of Gansu Province, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou 730000, China.
School of Chemistry and Chemical Engineering, Huaiyin Normal University, Huai'an 223000, China.
J Chromatogr A. 2020 Jun 21;1621:461035. doi: 10.1016/j.chroma.2020.461035. Epub 2020 Mar 16.
The present work described two triacontyl-bonded silica adsorbents containing different polar embedded groups (i.e. amide- and carbamate-type) for high performance liquid chromatography, which were prepared by covalent surface modification of silica gel with respective pre-synthesized polar-embedded triacontyl (C30) silane. The acylimidazole-mediated method was used for the first time for the synthesis of amide-type alkyl silane, while the carbamate-type silane was obtained via an improved solvent-free procedure. A conventional C30 stationary phase was also developed on the same silica substrate in the similar manner, which was used as a reference column for comparison of the unique mechanisms facilitated and/or furnished by the polar groups. The successful immobilization of the designed C30 species was confirmed by infrared spectroscopy and elemental analysis. In further comparison with an amide-embedded octadecyl (C18) two other conventional C18 stationary phases of different surface chemistry, detailed chromatographic characterization of the C30 series stationary phases was performed in terms of surface density, hydrophobicity, aromatic selectivity, shape selectivity and water tolerance using a diversified range of analytes, including homologous alkylbenzenes, isomeric polycyclic aromatic hydrocarbons, carotenes, congeners of polychlorobiphenyls, aromatic amines, phenolic compounds, estrogens and nucleosides. A high resemblance between the chromatographic behaviors of the two polar-modified C30 stationary phases was observed, meanwhile they demonstrated noticeable differences from non-polar C30 stationary phase. The polar-embedded C30 phases showed satisfactory performance towards the solutes of interest in the studied conditions. The beneficial synergy of the polar groups and the triacontyl chains enabled these polar-enhanced C30 stationary phases to address challenging separation tasks with high selectivity.
本工作描述了两种含有不同极性嵌入基团(即酰胺型和氨基甲酸酯型)的三癸基键合硅胶吸附剂,它们是通过各自预合成的极性嵌入三癸基(C30)硅烷共价表面修饰硅胶制备的。酰基咪唑介导法首次用于酰胺型烷基硅烷的合成,而氨基甲酸酯型硅烷则通过改进的无溶剂法获得。还以类似的方式在相同的硅胶基底上开发了常规的 C30 固定相,用作比较极性基团提供的独特机制的参考柱。通过红外光谱和元素分析证实了设计的 C30 物种的成功固定化。在与另一种酰胺嵌入的十八烷基(C18)进一步比较中,对其他两种不同表面化学的常规 C18 固定相进行了详细的色谱表征,使用多种分析物(包括同系物烷基苯、异构多环芳烃、类胡萝卜素、多氯联苯同系物、芳香胺、酚类化合物、雌激素和核苷)从表面密度、疏水性、芳香选择性、形状选择性和水容忍性方面对 C30 系列固定相进行了详细的色谱表征。两种极性修饰的 C30 固定相的色谱行为非常相似,同时它们与非极性 C30 固定相表现出明显的差异。极性嵌入的 C30 相在研究条件下对感兴趣的溶质表现出令人满意的性能。极性基团和三癸基链的有益协同作用使这些增强极性的 C30 固定相能够以高选择性解决具有挑战性的分离任务。