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纤维素衍生物涂覆的球形共价有机框架的制备及其作为高效液相色谱手性固定相的应用。

Fabrication of cellulose derivative coated spherical covalent organic frameworks as chiral stationary phases for high-performance liquid chromatographic enantioseparation.

机构信息

School of Chemistry, Guangzhou Key Laboratory of Analytical Chemistry for Biomedicine, South China Normal University, Guangzhou 510006, PR China.

School of Chemistry, Guangzhou Key Laboratory of Analytical Chemistry for Biomedicine, South China Normal University, Guangzhou 510006, PR China; SCNU Qingyuan Institute of Science and Technology Innovation Co., Ltd, Qingyuan 511517, PR China.

出版信息

J Chromatogr A. 2022 Jul 19;1675:463155. doi: 10.1016/j.chroma.2022.463155. Epub 2022 May 19.

Abstract

Porous spherical silica-based chiral stationary phases (CSPs) have been commercially used in the field of chiral separation, however, the scope of their application is, to some extent, limited by the instability of silica towards mobile phase containing strong base or acid. As such, developing new matrix-based CSPs is one of the effective strategies to overcome this bottleneck in studies of chiral separation materials. In this work, we have demonstrated that stable spherical covalent organic frameworks (SCOFs) can be utilized as matrixes for the fabrication of new CSPs for the first time. Specifically, a porous imine-linked SCOF with good crystallinity, large surface area, and high chemical stability is synthesized at room temperature. Then, cellulose-tris (3,5-dimethylphenylcarbamate) (CDMPC), a typical cellulose derivative, is selected as a potential chiral selector and coated onto the robust SCOFs, giving rise to the fabrication of new CDMPC@SCOF CSPs. The as-synthesized stable SCOF-based CSPs are exploited for high-performance liquid chromatographic (HPLC) enantioseparation, showing high resolution abilities for the separation of racemic compounds such as metalaxyl, 1-(1-naphthalenyl)ethanol, epoxiconazol, trans-stilbene oxide, and so on. Moreover, the prepared SCOF-based CSPs exhibit more superior acid and base stability than those of the silica-based CSPs. Our work not only uncovers the great potential of SCOFs as matrixes for constructing novel CSPs, but also expands the application of COFs in the field of enantiomeric separation under harsh base and acid conditions.

摘要

多孔球形硅基手性固定相(CSPs)已在手性分离领域得到商业应用,但由于硅对含强碱或强酸的流动相的不稳定性,其应用范围在一定程度上受到限制。因此,开发新的基于基质的 CSPs 是克服手性分离材料研究中这一瓶颈的有效策略之一。在这项工作中,我们首次证明了稳定的球形共价有机骨架(SCOFs)可以用作制备新型 CSPs 的基质。具体而言,在室温下合成了具有良好结晶性、大比表面积和高化学稳定性的多孔亚胺键合 SCOF。然后,选择纤维素三(3,5-二甲基苯甲酰基)(CDMPC)作为一种潜在的手性选择剂并涂覆在坚固的 SCOFs 上,从而制备了新型 CDMPC@SCOF CSPs。所合成的基于稳定 SCOF 的 CSPs 用于高效液相色谱(HPLC)手性分离,对金属吖啶、1-(1-萘基)乙醇、环氧康唑、反式亚苄基氧化合物等外消旋化合物的分离具有高分辨率能力。此外,所制备的基于 SCOF 的 CSPs 比基于硅的 CSPs 具有更优越的酸碱性稳定性。我们的工作不仅揭示了 SCOFs 作为构建新型 CSPs 基质的巨大潜力,而且扩展了 COFs 在苛刻酸碱条件下手性分离领域的应用。

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