Choi Hwa-Jin, Koh Dong-Yeun
Department of Chemical and Molecular Engineering (BK-21 Four), Korea Advanced Institute of Science and Technology, Daejeon 34141, Korea.
Membranes (Basel). 2022 Mar 24;12(4):357. doi: 10.3390/membranes12040357.
Efficient separation of enantiomers is critical in the chemical, pharmaceutical, and food industries. However, conventional separation methods, such as chromatography, crystallization, and enzymatic kinetic resolution, require high energy costs and specific reaction conditions for the efficient purification of one enantiomer. In contrast, membrane-based processes are continuous processes performed with less energy than conventional separation processes. Enantioselective polymer membranes have been developed for the chiral resolution of pharmaceuticals; however, it is difficult to generate sufficient enantiomeric excess (ee) with polymer membranes. In this work, a homochiral filler of L-His-ZIF-8 was synthesized by the ligand substitution method and mixed with polyamide(imide) (i.e., Torlon) to fabricate an enantioselective mixed-matrix membrane (MMM). The enantio-selective separation of R-1-phenylethanol over S-1-phenylethanol was demonstrated with a 25 wt% loaded L-His-ZIF-8/Torlon MMM in an organic solvent nanofiltration (OSN) mode.
对映体的高效分离在化学、制药和食品工业中至关重要。然而,传统的分离方法,如色谱法、结晶法和酶促动力学拆分法,需要高昂的能源成本和特定的反应条件才能有效地纯化一种对映体。相比之下,基于膜的工艺是连续过程,其能耗低于传统分离过程。对映选择性聚合物膜已被开发用于药物的手性拆分;然而,用聚合物膜很难产生足够的对映体过量(ee)。在这项工作中,通过配体取代法合成了L-His-ZIF-8的纯手性填料,并将其与聚酰胺(酰亚胺)(即Torlon)混合,制备了一种对映选择性混合基质膜(MMM)。在有机溶剂纳滤(OSN)模式下,使用负载量为25 wt%的L-His-ZIF-8/Torlon MMM证明了R-1-苯乙醇相对于S-1-苯乙醇的对映选择性分离。