School of Chemistry, Sun Yat-sen University, Guangzhou 510275, China.
School of Chemistry, Sun Yat-sen University, Guangzhou 510275, China.
J Chromatogr A. 2021 Sep 27;1654:462475. doi: 10.1016/j.chroma.2021.462475. Epub 2021 Aug 14.
Rapid and high-flux enantiomer separation is significant for drug development. Membrane separation technology provides promising approaches for enantiomer separations. Porous membrane with good selectivity and high permeability is an ideal choice for enantiomer separations. Herein, we demonstrate the preparation of a novel two-dimensional chiral covalent triazine frameworks (CCTF) membrane by "in situ growth" method. Inheriting the strong chirality and specific interactions from CCTF, the CCTF membranes exhibited good enantioselectivity for drug intermediates and drug, including (R)/(S)-1-phenylethanol, (R)/(S)-1,1'-binaphthol and (R)/(S)-ibuprofen. Under optimal separation conditions, the enantiomeric excess value (e.e %) was above 21.7 % for (R)/(S)-1-phenylethanol, 12.0% for (R)/(S)-1,1'-binaphthol and 9.7 % for (R)/(S)-ibuprofen. The mechanism of the CCTF recognizing enantiomers were simulated by quantum mechanical calculations. In addition, the mechanism was also proved by the separation of enantiomers using this CCTF-modified silica column in liquid chromatography. The CCTF membrane may bring about the potentially application for large-scale production of chiral compounds. Meanwhile, this work provides a theoretical guidance for the application of CCOFs in enantiomer separation.
快速且高通量的对映体分离对于药物开发具有重要意义。膜分离技术为对映体分离提供了很有前景的方法。具有良好选择性和高通量的多孔膜是对映体分离的理想选择。在此,我们通过“原位生长”方法展示了一种新型二维手性共价三嗪框架(CCTF)膜的制备。CCTF 膜继承了 CCTF 的强手性和特定相互作用,对药物中间体和药物具有良好的对映体选择性,包括(R)/(S)-1-苯乙醇、(R)/(S)-1,1'-联萘酚和(R)/(S)-布洛芬。在最佳分离条件下,(R)/(S)-1-苯乙醇的对映体过量值(ee%)大于 21.7%,(R)/(S)-1,1'-联萘酚的对映体过量值(ee%)大于 12.0%,(R)/(S)-布洛芬的对映体过量值(ee%)大于 9.7%。通过量子力学计算模拟了 CCTF 识别对映体的机制。此外,通过使用这种 CCTF 修饰的硅胶柱在液相色谱中分离对映体也证明了该机制。CCTF 膜可能为手性化合物的大规模生产带来潜在的应用。同时,这项工作为 CCOFs 在对映体分离中的应用提供了理论指导。