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Fritless Capillary Columns for HPLC and CEC Prepared by Immobilizing the Stationary Phase in an Organic Polymer Matrix

机译:通过将固定相固定在有机聚合物基质中制备的用于HPLC和CEC的无毛细管毛细管柱

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A new design of immobilized particle separation media for capillary liquid chromatography and electrochro-matography has been developed. A mixture of porogenic solvents and methacrylate-based monomers is pumped through a packed column to provide, following a polyni-erization step, an organic matrix capable of holding the sorbent particles in place, thus rendering the end flits unnecessary. The new columns demonstrate excellent chromatographic performance in both CEC (reduced plate height [hI =1.1—1.5) and micro LC modes (h 2.2— 2.5), while minimizing secondary interactions encoun-tered when silica-based entrapment matrixes are em-ployed. In addition to delivering mechanically robust columns, the methacrylate matrix provides a mechanism for fine tuning of the electroosmotic flow velocity when 2-acrylamido-2-methyl-1-propanesulfonic acid (AMPS) is incorporated into the polymerization mixture.
机译:已开发出一种用于毛细管液相色谱和电色谱的固定化颗粒分离介质的新设计。将致孔剂溶剂和基于甲基丙烯酸酯的单体的混合物泵送通过填充柱,以在进行多步聚合步骤后提供能够将吸附剂颗粒固定在适当位置的有机基质,从而使末级碎片不再必要。新色谱柱在CEC(降低的板高度[hI = 1.1-1.5]和微型LC模式(h 2.2- 2.5)下均表现出出色的色谱性能,同时最大程度地减少了采用基于硅胶的捕集基质时所引起的二次相互作用。除了提供机械坚固的色谱柱外,当将2-丙烯酰胺基-2-甲基-1-甲基磺酸(AMPS)引入聚合混合物中时,甲基丙烯酸酯基质还提供了一种微调电渗流速的机制。

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