College of Chemistry and Chemical Engineering, Yunnan Normal University, Kunming 650500, PR China.
College of Chemistry and Chemical Engineering, Yunnan Normal University, Kunming 650500, PR China.
J Chromatogr A. 2024 Sep 13;1732:465231. doi: 10.1016/j.chroma.2024.465231. Epub 2024 Aug 9.
Macrocycles play vital roles in supramolecular chemistry and chromatography. 1,1'-Bi-2-naphthol (BINOL)-based chiral polyimine macrocycles are an emerging class of chiral macrocycles that can be constructed by one-step aldehyde-amine condensation of BINOL derivatives with other building blocks. These macrocycles exhibit good characteristics, such as facile preparation, rigid cyclic structures, multiple chiral centers, and defined molecular cavities, that make them good candidates as new chiral recognition materials for chromatographic enantioseparations. In this study, a BINOL-based [2+2] chiral polyimine macrocycle was synthesized by one-step condensation of enantiopure (S)-2,2'-dihydroxy-[1,1'-binaphthalene]-3,3'-dicarboxaldehyde with (1R,2R)-1,2-diaminocyclohexane. The product was modified with 5-bromo-1-pentene and then attached to thiolated silica using click chemistry to construct a new chiral stationary phase (CSP). The enantioselectivity of the new CSP was explored by separating various racemates under normal phase (NP) and reversed phase (RP) high performance liquid chromatography (HPLC). Thirteen racemates and eight racemates were enantioseparated under the two separation modes, respectively, including chiral alcohols, phenols, esters, ketones, amines, and organic acids. Among them, nine racemates achieved baseline separation under NP-HPLC and seven racemates achieved baseline separation under RP-HPLC. High resolution separation was observed with benzoin (Rs = 5.10), epinephrine (Rs = 4.98), 3-benzyloxy-1,2-propanediol (Rs = 4.42), and 4,4'-dimethylbenzoin (Rs = 4.52) in NP-HPLC, and with 4-methylbenzhydrol (Rs = 4.72), benzoin ethyl ether (Rs = 3.79), 1-phenyl-1-pentanol (Rs = 3.68), and 1-(3-bromophenyl)ethanol (Rs = 3.60) in RP-HPLC. Interestingly, the CSP complemented Chiralcel OD-H, Chiralpak AD-H, and CYCLOBOND I 2000 RSP columns for resolution of these test racemates, separating several racemic compounds that could not be well separated by the three commercially available columns. The influences of injected sample amount on separation were also evaluated. It was found that the column exhibited excellent stability and reproducibility after hundreds of injections, and the relative standard deviations (n = 5) of the retention time and resolution were less than 0.49% and 0.69%, respectively. This study indicates that the BINOL-based chiral macrocycle has great potential for HPLC enantioseparation.
大环化合物在超分子化学和色谱学中起着至关重要的作用。1,1'-联-2-萘酚(BINOL)基手性聚亚胺大环是一类新兴的手性大环化合物,可以通过 BINOL 衍生物与其他构建块的一步醛-胺缩合来构建。这些大环化合物具有良好的特性,例如易于制备、刚性环状结构、多个手性中心和确定的分子腔,使其成为用于色谱对映体拆分的新型手性识别材料的良好候选物。在这项研究中,通过对映纯(S)-2,2'-二羟基-[1,1'-联萘]-3,3'-二甲酸醛与(1R,2R)-1,2-二氨基环己烷的一步缩合,合成了一种基于 BINOL 的[2+2]手性聚亚胺大环。然后,用 5-溴-1-戊烯对产物进行修饰,再通过点击化学将其连接到巯基化硅胶上,构建了一种新的手性固定相(CSP)。通过在正相(NP)和反相(RP)高效液相色谱(HPLC)下分离各种外消旋体来探索新 CSP 的对映选择性。在两种分离模式下,分别拆分了 13 种和 8 种外消旋体,包括手性醇、酚、酯、酮、胺和有机酸。其中,9 种外消旋体在 NP-HPLC 下达到基线分离,7 种外消旋体在 RP-HPLC 下达到基线分离。在 NP-HPLC 中,苯偶姻(Rs = 5.10)、肾上腺素(Rs = 4.98)、3-苄氧基-1,2-丙二醇(Rs = 4.42)和 4,4'-二甲氧基苯偶姻(Rs = 4.52)以及在 RP-HPLC 中,4-甲基苯甲醇(Rs = 4.72)、苯偶姻乙基醚(Rs = 3.79)、1-苯基-1-戊醇(Rs = 3.68)和 1-(3-溴苯基)乙醇(Rs = 3.60)均观察到高分辨率分离。有趣的是,该 CSP 补充了 Chiralcel OD-H、Chiralpak AD-H 和 CYCLOBOND I 2000 RSP 柱对这些测试外消旋体的分辨率,分离了一些无法用三种市售柱很好分离的外消旋化合物。还评估了注入样品量对分离的影响。结果发现,该柱在数百次进样后表现出良好的稳定性和重现性,保留时间和分辨率的相对标准偏差(n = 5)分别小于 0.49%和 0.69%。本研究表明,基于 BINOL 的手性大环化合物在手性 HPLC 分离中具有巨大的潜力。