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一种手性金属有机笼[FeL](ClO),用于毛细管气相色谱分离。

A chiral metal-organic cage [FeL](ClO) used for capillary gas chromatographic separations.

机构信息

Department of Chemistry, Yunnan Normal University, Kunming, 650500, PR China.

Department of Chemistry, Yunnan Normal University, Kunming, 650500, PR China.

出版信息

Anal Chim Acta. 2022 Sep 1;1224:340197. doi: 10.1016/j.aca.2022.340197. Epub 2022 Aug 5.

Abstract

Metal-organic cages (MOCs), as a promising class of crystalline porous materials with well-defined cavities, have attracted wide attention due to their multifarious potential applications in gas storage, host-guest chemistry, molecular recognition, separation, catalysis, sensing, and drug delivery and so on. Herein, we report that a chiral MOC FeL coated capillary column was fabricated for high-resolution gas chromatographic separation of various analytes, including n-alkanes, n-alcohols, positional isomers, aromatic hydrocarbon mixture, especially for racemic compounds. A series of racemic compounds such as alcohols, epoxides, aldehydes, ketones, ethers, esters, alkenes, sulfoxides and amino acid derivatives could be well separated on the FeL coated capillary column with high enantioselectivity and good reproducibility. Comparing the chiral resolution ability of the MOC FeL coated column with the commercial β-DEX 120 column and the porous organic cage (POC) CC10 coated column, the chiral MOC column can be complementary to the two different types of columns. The results show that the chiral MOC FeL exhibited excellent separation performance toward a wide range of organic compounds, which will be very attractive as a new chiral separation media and has potential application prospects in separation science.

摘要

金属-有机笼(MOC)作为一类具有明确空腔的有前途的结晶多孔材料,由于其在气体储存、主客体化学、分子识别、分离、催化、传感和药物输送等方面的多种潜在应用而受到广泛关注。在此,我们报告了一种手性 MOC FeL 涂覆毛细管柱的制备,用于各种分析物的高分辨率气相色谱分离,包括正构烷烃、正醇、位置异构体、芳烃混合物,特别是对映异构体。一系列对映异构体,如醇、环氧化物、醛、酮、醚、酯、烯烃、亚砜和氨基酸衍生物,在手性 MOC FeL 涂覆毛细管柱上可以得到很好的分离,具有高对映选择性和良好的重现性。将 MOC FeL 涂覆柱的手性分辨率能力与商业 β-DEX 120 柱和多孔有机笼(POC)CC10 涂覆柱进行比较,手性 MOC 柱可以与两种不同类型的柱互补。结果表明,手性 MOC FeL 对广泛的有机化合物表现出优异的分离性能,作为一种新的手性分离介质具有很大的吸引力,在手性分离科学中具有潜在的应用前景。

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