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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Silica nanoparticle-templated methacrylic acid monoliths for in-line solid-phase extraction-capillary electrophoresis of basic analytes
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Silica nanoparticle-templated methacrylic acid monoliths for in-line solid-phase extraction-capillary electrophoresis of basic analytes

机译:硅胶纳米粒子模板的甲基丙烯酸整体柱,用于碱性分析物的在线固相萃取-毛细管电泳

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Polymeric ion-exchange monoliths typically exhibit low capacities due to the limited surface area on the globules of the monoliths.The ion-exchange binding of protonated weakly basic analytes on deprotonated carboxylate sites on methacrylate polymer monoliths has been increased by templating the monoliths with silica nanoparticles.The templating method is achieved by adding the nanoparticles as a suspension to the polymerisation mixture.After polymerisation, the nanoparticles are removed by washing the monolith with strong base.Monolithic columns prepared using this procedure have exhibited a 33-fold increase in ion-exchange capacity when compared to untemplated monoliths prepared and treated under similar conditions.The templating procedure does not alter the macroporous properties of the polymer monolith, confirmed through scanning electron microscopy and BET surface area analysis, but provides increased capacity predominantly through the re-orientation of more carboxylic acid groups. The resulting increase in ion-exchange capacity has proven to be useful for the preconcentration and separation of neurotransmitters by in-line solid-phase extraction-capillary electrophoresis. The increased capacity of the templated monolith allowed the injection time to be increased 10 times over that of an untemplated monolith,allowing 10 times more sample to be injected with the efficiencies and recoveries remaining unaffected.The enhancement in sensitivity for the test mixture of neurotransmitter (dopamine, norepinephrine and metanephrine)ranged 1500-1900 compared to a normal hydrodynamic injection in capillary electrophoresis. Efficiencies obtained for the neurotransmitters were 100000-260000 plates, typical of those obtained in capillary zone electrophoresis.The applicability of the increased capacity silica nano-templated polymer monolith was demonstrated by analysing trace levels of caffeine in biological, food and environmental samples.
机译:聚合物离子交换整料由于其整体表面积有限而通常表现出较低的容量。通过使用二氧化硅纳米粒子对整料进行模板化,提高了质子化弱碱性分析物在甲基丙烯酸酯聚合物整料上去质子化羧酸盐位点上的离子交换结合力通过将纳米颗粒作为悬浮液添加到聚合混合物中来实现模板化方法。聚合后,通过用强碱洗涤整料来去除纳米颗粒。使用此程序制备的整体柱的离子交换增加了33倍与在类似条件下制备和处理的未模板整料相比,其模板能力不会改变聚合物整料的大孔性能(通过扫描电子显微镜和BET表面积分析证实),但主要是通过对更多材料的重新取向来提高的羧酸基。事实证明,由此产生的离子交换容量增加可用于在线固相萃取-毛细管电泳对神经递质的预浓缩和分离。模板化整体柱的容量增加使进样时间比未模板化整体柱增加了10倍,从而使进样的样品效率提高了10倍以上,并且回收率保持不变。与正常的毛细管电泳流体动力注射相比,多巴胺,去甲肾上腺素和间肾上腺素的浓度范围为1500-1900。神经递质的效率为100000-260000板,是毛细管区带电泳的典型值。通过分析生物,食品和环境样品中的咖啡因含量,证明了容量增加的二氧化硅纳米模板聚合物整料的适用性。

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