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Clickable Periodic Mesoporous Organosilica Monolith for Highly Efficient Capillary Chromatographic Separation

机译:可单击的周期性介孔有机硅整体柱,用于高效毛细管色谱分离

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摘要

A novel clickable periodic mesoporous organosilica monolith with the surface area up to 1707 m(2) g(-1) was in situ synthesized in the capillary by the one-step condensation of the organobridged-bonded alkoxysilane precursor bis-(triethoxysilyl)ethylene. With Si-C bonds in the skeleton, the monolith possesses excellent chemical and mechanical stability. With vinyl groups highly loaded and homogeneously distributed throughout the structure, the monolith can be readily functionalized with functional groups by effective thiol-ene "click" chemistry reaction. Herein, with "click" modification of C18, the obtained monolith was successfully applied for capillary liquid chromatographic separation of small molecules and proteins. The column efficiency could reach 148 000 N/m, higher than most reported hybrid monoliths. Moreover, intact proteins could be separated well with good reproducibility, even after the monolithic column was exposed by basic mobile phase (pH 10.0) overnight, demonstrating the great promising of such monolith for capillary chromatographic separation.
机译:通过有机桥接键合的烷氧基硅烷前体双-(三乙氧基甲硅烷基)乙烯的一步缩合,在毛细管中原位合成了表面积高达1707 m(2)g(-1)的新型可点击的周期性介孔有机二氧化硅整体材料。骨架中具有Si-C键,整料具有出色的化学和机械稳定性。由于乙烯基高负载且均匀地分布在整个结构中,整料可以通过有效的硫醇-烯“点击”化学反应容易地被官能团官能化。本文中,通过对C18进行“点击”修饰,将获得的整料成功应用于小分子和蛋白质的毛细管液相色谱分离。色谱柱效率可达到148 000 N / m,高于大多数报道的混合整料。而且,完整的蛋白质也可以很好的重现性良好地分离,即使整块色谱柱在碱性流动相(pH 10.0)中暴露过夜后,也证明了这种整块色谱用于毛细管色谱分离的巨大前景。

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