Zang Huimin, Yao Shun, Luo Yingjie, Tang Dan, Song Hang
School of Chemical Engineering, Sichuan University, Chengdu, P. R. China.
Chirality. 2018 Nov;30(11):1182-1194. doi: 10.1002/chir.23011. Epub 2018 Sep 6.
As one kind of functionalized green medium, chiral ionic liquids (CILs) have been widely applied in fields of asymmetric catalysis, enantioseparation, and so on. In this study, four kinds of amino acid-based CILs were synthesized by using trimethylamine, N-methylpyrrolidine, N-methylimidazole, and tropine as cationic nucleus, respectively. Then their specific optical rotation and solubility in common solvents were determined for further resolution application. The effect of different cations in these CILs was explored on the separation of racemic phenylalanine in complex-precipitation way. Moreover, various factors were systematically investigated for their effects on resolution efficiency, including the type of additive copper salts, the molar ratio of Cu (II) to CIL, pH value, the amount of racemic phenylalanine, and temperature. Under the appropriate conditions, L-phenylalanine mainly existed in solid phase and could be separated from its enantiomers in liquid phase. Furthermore, the mechanism of resolution was studied by thermogravimetric analysis, infrared spectrum, and molecular simulation. The resolution system has characteristics of no organic solvent, fast separation speed, simple resolution process, and easy scale-up.
作为一种功能化绿色介质,手性离子液体(CILs)已广泛应用于不对称催化、对映体分离等领域。本研究分别以三甲胺、N-甲基吡咯烷、N-甲基咪唑和托品为阳离子核,合成了四种氨基酸基CILs。然后测定了它们的比旋光度和在常用溶剂中的溶解度,以供进一步的拆分应用。探讨了这些CILs中不同阳离子对以络合沉淀法拆分外消旋苯丙氨酸的影响。此外,系统研究了各种因素对拆分效率的影响,包括添加剂铜盐的种类、Cu(II)与CIL的摩尔比、pH值、外消旋苯丙氨酸的量和温度。在合适的条件下,L-苯丙氨酸主要存在于固相中,可以从其对映体的液相中分离出来。此外,通过热重分析、红外光谱和分子模拟研究了拆分机理。该拆分体系具有无有机溶剂、分离速度快、拆分过程简单、易于放大等特点。