Department of Chemistry, Yunnan Normal University, Kunming, 650500, People's Republic of China.
Mikrochim Acta. 2022 Aug 30;189(9):360. doi: 10.1007/s00604-022-05448-6.
A spherical chiral porous organic polymer (POPs) COP-1 is synthesized by the Friedel-Crafts alkylation reaction of Boc-3-(4-biphenyl)-L-alanine (BBLA) and 4,4'-bis(chloromethyl)-1,1'-biphenyl (BCMBP), which was used as a novel chiral stationary phase (CSPs) for mixed-mode high-performance liquid chromatography (HPLC) enantioseparation. The racemic compounds were resolved in normal-phase liquid chromatography (NPLC) using n-hexane/isopropanol as mobile phase and reversed-phase liquid chromatography (RPLC) using methanol/water as mobile phase. The COP-1-packed column exhibited excellent separation performance toward various racemic compounds including alcohols, amines, ketones, esters, epoxy compounds, organic acids, and amino acids in NPLC and RPLC modes. The effects of analyte mass and column temperature on the separation efficiency of racemic compounds were investigated. In addition, the chiral resolution ability of the COP-1-packed column not only can be complementary in RPLC/NPLC modes but also exhibit a good chiral recognition complementarity with Chiralpak AD-H column and chiral porous organic cage (POC) NC1-R column. The relative standard deviations (RSD) (n = 5) of the retention time, resolution value, and peak area by repeated separation of 1-(4-chiorophenyl)ethanol are all below 3.0%. The COP-1 column shows high column efficiency (e.g., 17,320 plates m for 1-(4-chlorophenyl)ethanol on COP-1 column in NPLC), high enantioselectivity, and good reproducibility toward various racemates. This work demonstrates that chiral POPs microspheres are promising chiral materials for HPLC enantioseparation.
一种球形手性多孔有机聚合物(POPs)COP-1 通过 Boc-3-(4-联苯基)-L-丙氨酸(BBLA)和 4,4'-双(氯甲基)-1,1'-联苯(BCMBP)的Friedel-Crafts 烷基化反应合成,该聚合物被用作新型手性固定相(CSPs)用于混合模式高效液相色谱(HPLC)对映体分离。手性化合物在正相液相色谱(NPLC)中使用正己烷/异丙醇作为流动相,在反相液相色谱(RPLC)中使用甲醇/水作为流动相进行拆分。COP-1 填充柱在手性化合物的分离方面表现出优异的分离性能,包括醇、胺、酮、酯、环氧化物、有机酸和氨基酸等在 NPLC 和 RPLC 模式下。考察了分析物质量和柱温对拆分手性化合物的分离效率的影响。此外,COP-1 填充柱的手性拆分能力不仅在 RPLC/NPLC 模式下具有互补性,而且与 Chiralpak AD-H 柱和手性多孔有机笼(POC)NC1-R 柱具有良好的手性识别互补性。1-(4-氯苯基)乙醇重复分离时的保留时间、分辨率值和峰面积的相对标准偏差(RSD)(n=5)均低于 3.0%。COP-1 柱在手性化合物的分离中表现出高柱效(例如,NPLC 中 1-(4-氯苯基)乙醇在 COP-1 柱上的理论塔板数为 17,320 块/m)、高对映选择性和良好的重现性。这项工作表明,手性 POPs 微球是高效液相色谱对映体分离有前途的手性材料。