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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Dithienyl benzothiadiazole derivatives: A new type of stationary phases for capillary gas chromatography
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Dithienyl benzothiadiazole derivatives: A new type of stationary phases for capillary gas chromatography

机译:二噻吩基苯并噻二唑衍生物:一种用于毛细管气相色谱的新型固定相

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Dithienyl benzothiadiazole (TBT) derivatives are characteristic of specific molecular structures and excellent thermal stability, offering the great potential for their use as stationary phases for capillary gas chromatography (GC). However, no related publications are available to date. Here we first report the exploration of two TBT derivatives, namely, 4,7-bis(5-dodecylthiophen-2-yl) benzothiadiazole (TBT-C12, a new derivative), and 4,7-di(thiophen-2-yl) benzothiadiazole (TBT), for the purpose. First, TBT-C12 and TBT were synthesized and statically coated onto capillary columns. Both of the as-prepared columns were characterized as nonpolar nature by the determined McReynolds constants. The results showed that both TBT-C12 and TBT columns achieved excellent separations for n-alkanes, esters and polycyclic aromatic hydrocarbons (PAHs), and the TBT-C12 column exhibited better thermal stability (up to 280. °C) than the TBT column. Moreover, a comparative study between the TBT-type columns and a commercial column was also made, suggesting the better selectivity of the TBT-type stationary phases toward n-alkanes and PAHs than that of the commercial one. Additionally, thermodynamic parameters suggested that the retention behaviors of n-alkanes and PAHs on the TBT-C12 column was mainly controlled by entropy change (δ. S). In conclusion, this work demonstrates the excellent chromatographic performance of TBT derivatives as a new type of GC stationary phases and their potential in separation science.
机译:二噻吩基苯并噻二唑(TBT)衍生物具有特定的分子结构和出色的热稳定性,为用作毛细管气相色谱(GC)的固定相提供了巨大潜力。但是,迄今为止没有相关出版物。在这里,我们首先报告对两种TBT衍生物的探索,即4,7-双(5-十二烷基噻吩-2-基)苯并噻二唑(TBT-C12,新衍生物)和4,7-二(噻吩-2-基) )苯并噻二唑(TBT)。首先,合成TBT-C12和TBT,并将其静态包被在毛细管柱上。通过测定的McReynolds常数将两种制备的柱表征为非极性性质。结果表明,TBT-C12和TBT色谱柱均实现了对正构烷烃,酯和多环芳烃(PAHs)的出色分离,并且TBT-C12色谱柱的热稳定性(高达280°C)比TBT色谱柱更好。此外,还对TBT型色谱柱和商用色谱柱进行了比较研究,表明TBT型固定相对正构烷烃和PAH的选择性比商用色谱柱更好。此外,热力学参数表明,正构烷烃和多环芳烃在TBT-C12色谱柱上的保留行为主要受熵变(δ。S)的控制。总之,这项工作证明了TBT衍生物作为新型GC固定相的出色色谱性能及其在分离科学中的潜力。

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