Yu Yunyan, Xu Nayan, Zhang Junhui, Wang Bangjin, Xie Shengming, Yuan Liming
Department of Chemistry, Yunnan Normal University, Kunming 650500, P. R. China.
ACS Appl Mater Interfaces. 2020 Apr 8;12(14):16903-16911. doi: 10.1021/acsami.0c01023. Epub 2020 Mar 24.
Chiral metal-organic frameworks (MOFs) have aroused great attention in the chiral separation field based on their excellent characteristics, including abundant topological structures, large surface area, adjustable pore/channel sizes, multiple active sites, and good chemical stability. However, the irregular morphology and nonuniformity of the synthesized MOF particles cause low column efficiency and high column backpressure for MOF-packed columns, which significantly affects their separation performance. Herein, we prepared a homochiral d-his-ZIF-8@SiO composite by growing of d-his-ZIF-8 on the carboxylic-functionalized SiO microspheres via a simple one-pot synthesis approach. The d-his-ZIF-8@SiO core-shell microspheres with uniform particles and narrow size distribution were applied as the chiral stationary phase (CSP) for enantioseparations in HPLC. Various racemates were separated on the d-his-ZIF-8@SiO-packed columns with -hexane/isopropanol as the mobile phase. Eighteen racemates including alcohol, phenol, amine, ketone, and organic acid were well resolved on the homochiral d-his-ZIF-8@SiO CSP. The d-his-ZIF-8@SiO core-shell microspheres' CSP possesses an excellent chiral resolution ability toward various racemic compounds with good reproducibility and stability. Hence, the fabrication of chiral MOF@SiO core-shell microspheres is an effective strategy to improve the application of homochiral MOFs as CSPs in the field of chromatography.
手性金属有机框架材料(MOFs)凭借其丰富的拓扑结构、大比表面积、可调节的孔道/通道尺寸、多个活性位点以及良好的化学稳定性等优异特性,在手性分离领域引起了广泛关注。然而,合成的MOF颗粒形态不规则且不均匀,导致MOF填充柱的柱效低和柱背压高,这显著影响了它们的分离性能。在此,我们通过一种简单的一锅合成方法,在羧基功能化的SiO微球上生长d-his-ZIF-8,制备了一种同手性的d-his-ZIF-8@SiO复合材料。具有均匀颗粒和窄尺寸分布的d-his-ZIF-8@SiO核壳微球被用作高效液相色谱(HPLC)对映体分离的手性固定相(CSP)。以正己烷/异丙醇为流动相,在d-his-ZIF-8@SiO填充柱上分离了各种外消旋体。包括醇、酚、胺、酮和有机酸在内的18种外消旋体在同手性的d-his-ZIF-8@SiO CSP上得到了很好的分离。d-his-ZIF-8@SiO核壳微球CSP对各种外消旋化合物具有优异的手性拆分能力,且具有良好的重现性和稳定性。因此,制备手性MOF@SiO核壳微球是提高同手性MOFs作为CSPs在色谱领域应用的有效策略。