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用于制备多模式整体硅胶毛细管柱的通用烯硫醇光点击反应

Versatile ene-thiol photoclick reaction for preparation of multimodal monolithic silica capillary columns.

作者信息

Marechal A, Laaniste A, El-Debs R, Dugas V, Demesmay C

机构信息

Université de Lyon, Université Claude Bernard Lyon I, Institut des Sciences Analytiques, UMR CNRS 5280, 5, rue de la DOUA, 69100 Villeurbanne, France.

Université de Lyon, Université Claude Bernard Lyon I, Institut des Sciences Analytiques, UMR CNRS 5280, 5, rue de la DOUA, 69100 Villeurbanne, France.

出版信息

J Chromatogr A. 2014 Oct 24;1365:140-7. doi: 10.1016/j.chroma.2014.09.017. Epub 2014 Sep 16.

Abstract

This paper presents a photografting process of monolithic silica capillary columns based on the ene-thiol click chemistry. This study is performed on a "generic" vinyl-functionalized silica monolith (Hmin 6±1μm). The photoclick reaction is investigated using different thiol monomers (octadecanethiol, cysteine and sodium mercaptoethanesulfonate) to prepare capillary columns dedicated to various chromatographic modes (reversed-phase, HILIC and strong cation exchange). Whatever the monomer used, the photografting reaction is achieved in less than 5min with a relatively high thiol monomer content. This allows preparing highly retentive and efficient monolithic columns while avoiding polymerization and/or column clogging. In addition to the aforementioned properties (duration, versatility, efficiency), this photo-triggered chemical reaction allows addressing several appropriate surface functionalizations inside a single monolithic column in order to prepare nanovolume multimodal capillary columns. A multimodal biphasic monolithic column with a 1cm length cation-exchange segment followed by a 9cm length reversed-phase segment (SCX-RP) is prepared through two successive photografting reactions using a UV-mask to localize the reactions. This multimodal biphasic column is investigated using a model sample for the selective fractionation and separation of cationic and neutral compounds and is applied to the on-line preconcentration and separation of β-blockers.

摘要

本文介绍了一种基于烯-硫醇点击化学的整体式硅胶毛细管柱的光接枝过程。本研究是在一种“通用”的乙烯基官能化硅胶整体柱(最小粒径6±1μm)上进行的。使用不同的硫醇单体(十八烷硫醇、半胱氨酸和巯基乙磺酸钠)研究光点击反应,以制备适用于各种色谱模式(反相、亲水作用色谱和强阳离子交换)的毛细管柱。无论使用何种单体,光接枝反应都能在不到5分钟内完成,且硫醇单体含量相对较高。这使得在避免聚合和/或柱堵塞的情况下制备出具有高保留性和高效性的整体柱成为可能。除了上述特性(持续时间、通用性、效率)外,这种光引发的化学反应还能在单个整体柱内实现多种合适的表面功能化,从而制备出纳升体积的多模式毛细管柱。通过使用紫外光掩膜定位反应,通过两次连续的光接枝反应制备了一种多模式双相整体柱,该柱具有1cm长的阳离子交换段,后面跟着9cm长的反相段(SCX-RP)。使用模型样品对这种多模式双相柱进行了阳离子和中性化合物的选择性分级分离研究,并将其应用于β受体阻滞剂的在线预浓缩和分离。

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