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首页> 外文期刊>Journal of separation science. >Styrene-N-phenylacrylamide co-polymer modified silica monolith particles with an optimized mixing ratio of monomers as a new stationary phase for the separation of peptides in high performance liquid chromatography
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Styrene-N-phenylacrylamide co-polymer modified silica monolith particles with an optimized mixing ratio of monomers as a new stationary phase for the separation of peptides in high performance liquid chromatography

机译:苯乙烯-N-苯基丙烯酰胺共聚物改性二氧化硅整料颗粒,单体的优化混合比作为一种新的固定相,用于在高效液相色谱中分离肽

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摘要

A stationary phase was prepared by chemical derivatization of the support particles with a layer of copolymer composed of styrene and N-phenyl acrylamide. Silicamonolith particles of ca. 2.6 mu m (volume-based average) have been prepared as the support particles by sol-gel reaction followed by differential sedimentation. The particles were reacted with 3-chloropropyl trimethoxysilane followed by sodium diethyldithiocarbamate to introduce an initiator moiety. Then, the copolymer layer was immobilized via reversible addition-fragmentation transfer polymerization. The resultant phase was packed in glass-lined stainless-steel micro-columns (1 x 150 mm) and evaluated for the separation of a mixture composed of five peptides (Trp-Gly, ThrTyr- Ser, angiotensin I, isotocin and bradykinin). The effect of monomer mixing ratio (styrene versus N-phenyl acrylamide) on the chromatographic separation efficiency of the stationary phase was examined. A number of theoretical plates (N) as high as 33 600 plates/column (224 000 plates/m, 4.46 mu mplate height) was achieved using the column packed with the optimized stationary phase. The column-to-column reproducibility based on three columns packed with three different batches of stationary phase was found satisfactory in separation efficiency, retention factor, and asymmetry factor.
机译:通过用苯乙烯和正苯基丙烯酰胺组成的载体颗粒的化学衍生来制备固定相。硅氧化硅颗粒的CA。 2.6μm(基于体积的平均值)被溶胶 - 凝胶反应作为磷胶 - 凝胶反应制备为磷酸盐颗粒。将颗粒与3-氯丙基三甲氧基硅烷反应,然后用二乙基二硫代氨基甲酸酯引入引发剂部分。然后,通过可逆添加 - 碎种转移聚合固定共聚物层。将所得相填充在玻璃衬里的不锈钢微柱(1×150mm)中,并评估由五种肽(Trp-Gly,Thrtyr-Ser,血管紧张素I,同种酰和Bradykinin组成的混合物的分离。检查单体混合比(苯乙烯与正苯基丙烯酰胺)对固定相的色谱分离效率的影响。使用填充有优化的固定相的柱实现了多达33 600平板/柱(224 000平板/ m,4.46μmplate高度)的许多理论板(n)。基于三柱填充有三个不同批次的固定相的柱的再现性被发现在分离效率,保留因子和不对称因子中令人满意。

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