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高效液相色谱手性拆分中的卤键:描述、特征与建模。

Halogen bond in high-performance liquid chromatography enantioseparations: Description, features and modelling.

机构信息

Istituto di Chimica Biomolecolare ICB, CNR, Sede secondaria di Sassari, Traversa La Crucca 3, Regione Baldinca, I-07100 Li Punti, Sassari, Italy.

Dipartimento di Scienze Molecolari e Nanosistemi DSMN, Università Ca' Foscari di Venezia, Via Torino 155, I-30172 Mestre Venezia, Italy.

出版信息

J Chromatogr A. 2018 Aug 17;1563:71-81. doi: 10.1016/j.chroma.2018.05.061. Epub 2018 May 30.

Abstract

Halogen bond (XB)-driven enantioseparations involve halogen-centred regions of electronic charge depletion (σ-hole) as electrophilic recognition sites. The knowledge in this field is still in its infancy. Indeed, although the influence of halogens on enantioseparation have been often considered, only recently the function of electrophilic halogens (Cl, Br, I) as enantioseparations 'drivers' has been demonstrated by our groups. Further to these studies, in this paper we focus on some unexplored issues. First, as XB-driven chiral recognition mechanisms are at an early stage of comprehension, a theoretical investigation based on a series of 32 molecular dynamic (MD) simulations was performed by using polyhalogenated 4,4'-bipyridines and polysaccharide-based polymers as ligands and receptors, respectively. Enantiomer elution orders (EEOs) were derived from calculations and the theoretical model accounted for some analyte- and chiral stationary phase (CSP)-dependent experimental EEO inversions. Then, the function of halogen-centred σ-holes in competitive systems, presenting also hydrogen bond (HB) centres as recognition sites, was considered. In this regard, Pirkle's enantioseparations of halogenated compounds performed on Whelk-O1 were theoretically re-examined and electrostatic potentials (EPs) associated with both σ-holes on halogens and HB centres were computed and compared. Then, the enantioseparation of halogenated 2-nitro-1-arylethanols was performed on cellulose tris(3,5-dimethylphenylcarbamate) (CDMPC) and the influence of halogen substituents on the chromatographic results was evaluated by correlating theoretical and experimental data.

摘要

卤键(XB)驱动的对映选择性分离涉及电子电荷耗尽的卤中心区域(σ-空穴)作为亲电识别位点。该领域的知识仍处于起步阶段。事实上,尽管卤素对对映选择性分离的影响经常被考虑,但直到最近,我们的研究小组才证明了亲电卤素(Cl、Br、I)作为对映选择性分离“驱动力”的作用。在这些研究的基础上,本文我们重点关注了一些尚未探索的问题。首先,由于 XB 驱动的手性识别机制处于理解的早期阶段,因此我们进行了一系列 32 个分子动力学(MD)模拟的理论研究,分别使用多卤代 4,4'-联吡啶和基于多糖的聚合物作为配体和受体。对映体洗脱顺序(EEO)是通过计算得出的,该理论模型解释了一些与分析物和手性固定相(CSP)相关的实验 EEO 反转。然后,考虑了具有氢键(HB)中心作为识别位点的竞争体系中卤中心σ-空穴的作用。在这方面,我们重新理论检查了 Pirkle 在 Whelk-O1 上对卤代化合物的对映选择性分离,并计算和比较了与卤代物上的σ-空穴和 HB 中心相关的静电势(EP)。然后,在纤维素三(3,5-二甲基苯基氨基甲酸酯)(CDMPC)上进行了卤代 2-硝基-1-芳基乙醇的对映选择性分离,并通过关联理论和实验数据评估了卤代取代基对色谱结果的影响。

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