首页> 外文期刊>Asian Journal of Chemistry: An International Quarterly Research Journal of Chemistry >Microwave Irradiation Used to Immobilize the Stationary Phase in Sol-Gel and Organic Polymer Matrix for Micro-HPLC and Capillary Electrochromatography
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Microwave Irradiation Used to Immobilize the Stationary Phase in Sol-Gel and Organic Polymer Matrix for Micro-HPLC and Capillary Electrochromatography

机译:微波辐射固定化Sol-Gel和有机聚合物基质中的固定相,用于Micro-HPLC和毛细管电色谱

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A novel design to immobilize the stationary phase for micro-HPLC and capillary electrochromatography has been initially attempted. Porous temporary frit in fused silica capillary was rapidly fabricated by sintering stainless steel powders rapidly, which could withstand a high pressure up to 60 MPa during slurry packing. A mixture of monomer and porogenic solvents such as silica-based and organic-based monomers were pumped into the packed capillary, respectively, followed a quick polymerization by microwave irradiation. The sol-gel network and organic matrix were strong enough to hold back the sorbent particles in place, then rendering the end frits unnecessary. The typical columns prepared demonstrated excellent chromatographic performance using our self-installed micro-HPLC system. Baseline separation of the model analytes was achieved with the largest theoretical plate number (N) up to 40000/m for the last eluted compound (ethylbenzene), whilst a higher N over 74000/m was obtained using the sol-gel immobilized column by CEC. A scanning electron micrograph of a cross-section of the capillary column showed visually the morphological changes of packing material during the microwave irradiation.
机译:最初尝试了一种新颖的固定化固定相的方法,用于微型HPLC和毛细管电色谱。通过快速烧结不锈钢粉末,可快速制造熔融石英毛细管中的多孔临时玻璃料,在浆料填充过程中可承受高达60 MPa的高压。分别将单体和成孔剂(例如二氧化硅基和有机基单体)的混合物泵入填充的毛细管中,然后通过微波辐射进行快速聚合。溶胶-凝胶网络和有机基质足够坚固,可以将吸附剂颗粒固定在适当的位置,因此不必再使用玻璃料。使用我们的自行安装的微型HPLC系统,制备的典型色谱柱表现出出色的色谱性能。通过最后的洗脱化合物(乙苯)的最大理论塔板数(N)可达到模型分析物的基线分离值(N),最高可达40000 / m,而使用CEC的溶胶-凝胶固定柱可得到高于74000 / m的较高N 。毛细管柱横截面的扫描电子显微镜照片从视觉上显示了在微波辐照期间填料的形态变化。

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