Department of Chemistry, Yunnan Normal University, Kunming 650500, PR China.
Key Laboratory of Molecular Medicine and Biotherapy, School of Life Science, Beijing Institute of Technology, No. 5 Zhongguancun South Street, Beijing 100081, China.
J Chromatogr A. 2024 May 10;1722:464911. doi: 10.1016/j.chroma.2024.464911. Epub 2024 Apr 12.
In this study, we have synthesised a chiral l-hyp-Ni/Fe@SiO composite as a chiral stationary phase (CSP) for high-performance liquid chromatography (HPLC) for the first time. This was achieved by coating two-dimensional (2D) chiral metal-organic framework nanosheets (MONs) l-hyp-Ni/Fe onto the surface of activated SiO microspheres using the "wrapped in net" method. The separation efficiency of the l-hyp-Ni/Fe chromatographic column was systematically evaluated in normal-phase HPLC (NP-HPLC) and reversed-phase HPLC (RP-HPLC) configurations, employing various racemates as analytes. The findings revealed that 16 chiral compounds were separated using NP-HPLC, and five were separated using RP-HPLC, encompassing alcohols, amines, ketones, esters, alkanes, ethers, amino acids and sulfoxides. Notably, the resolution (Rs) of nine chiral compounds exceeded 1.5, indicating baseline separation. Furthermore, the resolution performance of the l-hyp-Ni/Fe@SiO-packed column was compared with that of Chiralpak AD-H. It was observed that certain enantiomers, which either could not be resolved or were inadequately separated on the Chiralpak AD-H column, attained separation on the 2D chiral MONs column. These findings suggest a complementary relationship between the two columns in racemate separation, with their combined application facilitating the resolution of a broader spectrum of chiral compounds. In addition, baseline separation was achieved for five positional isomers on the l-hyp-Ni/Fe@SiO-packed column. The effects of the analyte mass and column temperature on the resolution were also examined. Moreover, during HPLC analysis, the l-hyp-Ni/Fe columns demonstrated commendable repeatability, stability and reproducibility in enantiomer separation. This research not only advances the utilisation of 2D chiral MONs as CSPs but also expands their applications in the separation sciences.
在这项研究中,我们首次合成了手性 l-hyp-Ni/Fe@SiO 复合材料作为高效液相色谱(HPLC)的手性固定相(CSP)。这是通过使用“包裹在网中”的方法将二维(2D)手性金属有机骨架纳米片(MONs)l-hyp-Ni/Fe 涂覆到活化的 SiO 微球表面上来实现的。通过使用各种外消旋体作为分析物,在正相 HPLC(NP-HPLC)和反相 HPLC(RP-HPLC)配置中系统地评估了 l-hyp-Ni/Fe 色谱柱的分离效率。结果表明,16 种手性化合物在 NP-HPLC 中得到分离,5 种化合物在 RP-HPLC 中得到分离,包括醇、胺、酮、酯、烷烃、醚、氨基酸和亚砜。值得注意的是,9 种手性化合物的分辨率(Rs)超过 1.5,表明达到基线分离。此外,还比较了 l-hyp-Ni/Fe@SiO 填充柱的分辨率性能与 Chiralpak AD-H 的分辨率性能。结果表明,某些对 Chiralpak AD-H 柱不能分离或分离不完全的对映体,在手性 MONs 柱上得到了分离。这表明这两种柱在拆分外消旋体方面存在互补关系,联合应用可以提高对更广泛的手性化合物的分辨率。此外,在 l-hyp-Ni/Fe@SiO 填充柱上实现了 5 种位置异构体的基线分离。还研究了分析物质量和柱温对分辨率的影响。此外,在 HPLC 分析中,l-hyp-Ni/Fe 柱在手性分离方面表现出良好的重复性、稳定性和重现性。这项研究不仅推进了二维手性 MONs 作为 CSP 的应用,还拓展了它们在分离科学中的应用。