材料科学
手性柱色谱法
化学工程
对映体
介孔材料
纳米晶
金属有机骨架
表面改性
选择性
金属
相(物质)
分散性
蒸馏
锆
高效液相色谱法
色谱法
填充床
聚合物
比表面积
有机化学
柱色谱法
作者
Soraya Bouras,Apichai Manaprasertsak,G. Patriarche,Cédric Boissière,Didier Thiébaut,Jérôme Vial,Christian Serre,Antoine Tissot
标识
DOI:10.1021/acsanm.5c04232
摘要
Current stationary phases used in chiral high-performance liquid chromatography (HPLC) mainly rely on the use of functionalized polysaccharides. They allow efficient separation of many chiral mixtures, but their cost remains excessively high. The use of metal organic frameworks (MOFs) as stationary phases has been investigated within the past decade, but low column efficiency and excessive column backpressure have often been reported as a result of the irregular shape, submicrometer, and wide size distribution of the MOFs particles. Here, we present a tunable platform of a pure MOF chiral stationary phase for chromatography through the functionalization of MIP-206(Zr) nanocrystals with specific affordable chiral groups, shaped through spray-drying as mechanically stable micrometric particles. MIP-206(Zr) is a highly tunable zirconium oxocluster-based mesoporous solid built with substituted feedstock-derived isophthalic acids (IPA) whose large 1D pores (2.6 nm) offer an ideal platform for chromatographic separations. It has been functionalized through a water-stable postsynthetic modification with camphorsulfonic acid (camphor sulfonic acid (CSA)) or camphoric acid. The chiral MOFs nanocrystals have then been shaped by spray-drying into “doughnut-like” microparticles and packed into HPLC columns. The MIP-206/CSA column demonstrated a separation of carvone enantiomers with a promising selectivity of more than 1.2.
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