Vojtylová Terézia, Hamplová Věra, Galewski Zbigniew, Korbecka Izabela, Sýkora David
Department of Chemistry, Institute of Physics, Czech Academy of Sciences, Prague, Czech Republic.
Department of Analytical Chemistry, Faculty of Chemical Engineering, University of Chemistry and Technology, Prague, Czech Republic.
J Sep Sci. 2017 Apr;40(7):1465-1469. doi: 10.1002/jssc.201601386. Epub 2017 Mar 17.
Chiral high-performance liquid chromatography separation of two recently synthesized liquid crystalline materials C1 and C2 was studied in the reversed-phase mode. Both materials have an azo-moiety and one chiral center in their molecular structures. They were available in racemic and pure S forms. For the enantiomeric separations, a Chiralpak AY-RH stationary phase based on amylose tris(5-chloro-2-methylphenylcarbamate) coated on 5 μm silica was used. The compounds were analyzed in both of their possible forms, the more thermodynamically stable E form and the labile Z form. The conditions and time scale of the UV-induced E to Z transition were briefly evaluated. Under the optimized conditions, we were able to baseline separate S and R enantiomers of both of the studied materials not only in their E forms, but also in their Z forms. In comparison to the separation in the normal-phase mode, which we have reported recently, the resolution in the reversed-phase mode is significantly better. Interestingly, peak reversal was noticed for the S and R enantiomers when the separation was carried out with E versus Z forms of both compounds.
研究了在反相模式下通过手性高效液相色谱法分离两种最近合成的液晶材料C1和C2。两种材料在其分子结构中均具有偶氮部分和一个手性中心。它们有外消旋体和纯S型两种形式。对于对映体分离,使用了涂覆在5μm硅胶上的基于直链淀粉三(5-氯-2-甲基苯基氨基甲酸酯)的Chiralpak AY-RH固定相。对化合物的两种可能形式,即热力学上更稳定的E型和不稳定的Z型进行了分析。简要评估了紫外光诱导的E到Z转变的条件和时间尺度。在优化条件下,我们不仅能够在两种研究材料的E型中,而且能够在它们的Z型中对S和R对映体进行基线分离。与我们最近报道的正相模式下的分离相比,反相模式下的分离度明显更好。有趣的是,当用两种化合物的E型与Z型进行分离时,观察到S和R对映体的峰反转。