手性诱导制备cof基膜的有效对映选择性分离

IF 9.5
Fanmengjing Wang , Yizhihao Lu , Kaiqiang He , Philip J. Marriott , Matthew R. Hill , Huanting Wang
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引用次数: 0

摘要

由于对映体独特的生物学或药学性质,有效的手性拆分在食品、制药和农业工业中非常重要。膜辅助手性分离技术具有低成本、高收率的潜在优势,已成为研究热点,但如何制备高选择性、高通量的手性膜仍是一个难题。共价有机骨架(COFs)是一类具有高孔隙率和多种功能的多孔材料,是开发高性能手性分离膜的重要材料;然而,这些材料还有待开发。在这项工作中,我们证明了通过手性诱导在聚合物底物上原位生长手性TpPa-1 (cTpPa-1)膜。所得cTpPa-1@PAN膜在通量为5.5 mmol m−2 h−1的情况下,对柠檬烯外消旋体的最大对映选择性为99.3% ee。此外,研究并讨论了进料溶剂极性对膜性能的影响、cTpPa-1在制备手性复合膜中的通用性以及cTpPa-1基膜的相关机理。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Preparation of COF-based membranes via chiral induction for efficient enantioselective resolution

Preparation of COF-based membranes via chiral induction for efficient enantioselective resolution
Efficient chiral resolution is highly important in the food, pharmaceutical and agriculture industries because of the distinctive biological or pharmaceutical properties of enantiomers. Membrane-assisted chiral separation, which has the potential advantages of low cost and high yield, has attracted significant research attention, but the fabrication of high-quality chiral membranes displaying both high selectivity and high flux of enantiomers is still a challenge. Covalent organic frameworks (COFs), a class of porous materials with high porosity and diverse functionalities, are promising for the development of high-performance chiral separation membranes; however, these materials have yet to be developed. In this work, we demonstrated the in situ growth of a chiral TpPa-1 (cTpPa-1) membrane on polymer substrates via chiral induction. The resulting cTpPa-1@PAN membrane displayed a maximum enantioselectivity of 99.3 ​% ee for resolving limonene racemates with a flux of 5.5 ​mmol ​m−2 ​h−1. Furthermore, the effects of feed solvent polarity on membrane performance, the versatility of cTpPa-1 for making chiral composite membranes, and the mechanisms associated with cTpPa-1-based membranes were studied and are discussed.
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CiteScore
8.50
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