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超交联:用于高效分离小分子的具有大表面积的多孔聚合物整体毛细管柱的新方法。

Hypercrosslinking: new approach to porous polymer monolithic capillary columns with large surface area for the highly efficient separation of small molecules.

机构信息

Department of Chemistry, University of California, Berkeley, CA 94720, USA.

出版信息

J Chromatogr A. 2010 Dec 24;1217(52):8212-21. doi: 10.1016/j.chroma.2010.10.100. Epub 2010 Oct 31.

DOI:10.1016/j.chroma.2010.10.100
PMID:21092973
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3022388/
Abstract

Monolithic polymers with an unprecedented surface area of over 600 m(2)/g have been prepared from a poly(styrene-co-vinylbenzyl chloride-co-divinylbenzene) precursor monolith that was swollen in 1,2-dichloroethane and hypercrosslinked via Friedel-Crafts reaction catalyzed by ferric chloride. Both the composition of the reaction mixture used for the preparation of the precursor monolith and the conditions of the hypercrosslinking reaction have been varied using mathematical design of experiments and the optimized system validated. Hypercrosslinked monolithic capillary columns contain an array of small pores that make the column ideally suited for the high efficiency isocratic separations of small molecules such as uracil and alkylbenzenes with column efficiencies reproducibly exceeding 80,000 plates/m for retained compounds. The separation process could be accelerated while also improving peak shape through the use of higher temperatures and a ternary mobile phase consisting of acetonitrile, tetrahydrofuran, and water. As a result, seven compounds were well separated in less than 2 min. These columns also facilitate separations of peptide mixtures such as a tryptic digest of cytochrome c using a gradient elution mode which affords a sequence coverage of 93%. A 65 cm long hypercrosslinked capillary column used in size exclusion mode with tetrahydrofuran as the mobile phase afforded almost baseline separation of toluene and five polystyrene standards.

摘要

已经从溶胀在 1,2-二氯乙烷中的聚(苯乙烯-共-乙烯基苄基氯-共-二乙烯基苯)先驱体整体式聚合物制备出具有超过 600 m(2)/g 的前所未有的表面积的整体式聚合物,通过三氯化铁催化的 Friedel-Crafts 反应进行超交联。使用数学实验设计来改变用于制备先驱体整体式聚合物的反应混合物的组成和超交联反应的条件,并验证优化的系统。超交联整体式毛细管柱包含一系列小孔,使该柱非常适合小分子的高效等度分离,如嘧啶和烷基苯,保留化合物的柱效可重复超过 80,000 板/m。通过使用更高的温度和由乙腈、四氢呋喃和水组成的三元流动相,可以加速分离过程并改善峰形。结果,七种化合物在不到 2 分钟内得到了很好的分离。这些柱还可以通过梯度洗脱模式分离肽混合物,如细胞色素 c 的胰蛋白酶消化物,提供 93%的序列覆盖率。使用四氢呋喃作为流动相的 65 厘米长的超交联毛细管柱在尺寸排阻模式下可实现甲苯和五个聚苯乙烯标准品的几乎基线分离。

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