| Literature DB >> 25030529 |
Yongwu Peng1, Tengfei Gong1, Kang Zhang2, Xiaochao Lin1, Yan Liu1, Jianwen Jiang2, Yong Cui1.
Abstract
The separation of racemic molecules is of substantial significance not only for basic science but also for technical applications, such as fine chemicals and drug development. Here we report two isostructural chiral metal-organic frameworks decorated with chiral dihydroxy or -methoxy auxiliares from enantiopure tetracarboxylate-bridging ligands of 1,1'-biphenol and a manganese carboxylate chain. The framework bearing dihydroxy groups functions as a solid-state host capable of adsorbing and separating mixtures of a range of chiral aromatic and aliphatic amines, with high enantioselectivity. The host material can be readily recycled and reused without any apparent loss of performance. The utility of the present adsorption separation is demonstrated in the large-scale resolution of racemic 1-phenylethylamine. Control experiments and molecular simulations suggest that the chiral recognition and separation are attributed to the different orientations and specific binding energies of the enantiomers in the microenvironment of the framework.Entities:
Year: 2014 PMID: 25030529 DOI: 10.1038/ncomms5406
Source DB: PubMed Journal: Nat Commun ISSN: 2041-1723 Impact factor: 14.919