Wu Haoran, Yao Shun, Qian Guofei, Yao Tian, Song Hang
School of Chemical Engineering, Sichuan University, Chengdu 610065, PR China.
School of Chemical Engineering, Sichuan University, Chengdu 610065, PR China.
J Chromatogr A. 2015 Oct 30;1418:150-157. doi: 10.1016/j.chroma.2015.09.058. Epub 2015 Sep 21.
Aqueous two-phase systems (ATPS) based on tropine type chiral ionic liquids and inorganic salt solution were designed and prepared for the enantiomeric separation of racemic phenylalanine. The phase behavior of IL-based ATPS was comprehensive investigated, and phase equilibrium data were correlated by Merchuk equation. Various factors were also systematically investigated for their influence on separation efficiency. Under the appropriate conditions (0.13g/g [C8Tropine]pro, 35mg/g Cu(Ac)2, 20mg/g d,l-phenylalanine, 0.51g/g H2O and 0.30g/g K2HPO4), the enantiomeric excess value of phenylalanine in solid phase (mainly containing l-enantiomer) was 65%. Finally, the interaction mechanism was studied via 1D and 2D NMR. The results indicate that d-enantiomer of phenylalanine interacts more strongly with chiral ILs and Cu(2+) based on the chiral ion-pairs space coordination mechanism, which makes it tend to remain in the top IL-rich phase. By contrast, l-enantiomer is transferred into the solid phase. Above chiral ionic liquids aqueous two-phase systems have demonstrated obvious resolution to racemic phenylalanine and could be promising alterative resolution approach for racemic amino acids in aqueous circumstance.
设计并制备了基于托品型手性离子液体和无机盐溶液的双水相体系(ATPS),用于外消旋苯丙氨酸的对映体分离。全面研究了基于离子液体的双水相体系的相行为,并用Merchuk方程关联了相平衡数据。还系统研究了各种因素对分离效率的影响。在合适的条件下(0.13g/g [C8托品]pro、35mg/g Cu(Ac)2、20mg/g d,l-苯丙氨酸、0.51g/g H2O和0.30g/g K2HPO4),固相(主要含l-对映体)中苯丙氨酸的对映体过量值为65%。最后,通过一维和二维核磁共振研究了相互作用机理。结果表明,基于手性离子对空间配位机制,苯丙氨酸的d-对映体与手性离子液体和Cu(2+)的相互作用更强,这使其倾向于留在富含离子液体的上相。相比之下,l-对映体转移到固相中。上述手性离子液体双水相体系对外消旋苯丙氨酸表现出明显的拆分效果,有望成为水相中外消旋氨基酸拆分的替代方法。