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Comparison of newly developed hydroxyl-functionalized monodisperse HILIC columns new HILIC column

机译:新开发的羟基官能化单分散性HILIC柱的比较新的HILIC柱

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ABSTRACT, In this study, new hydroxyl-functionalized monodisperse polymeric hydrophilic interaction chromatography (HILIC) columns were developed using different derivatization agents. In addition, the influences of derivatization temperature of the best agent and polymer composition on the separation were investigated under HILIC conditions. Monodisperse-porous hydrophilic particles were synthesized by the seeded polymerization method using 3-chloro-2-hydroxypropile methacrylate (HPMA-CL) and ethylene glycol dimethacrylate (EGDMA) monomers. The chloropropyl terminal ends of the poly(HPMA-CI-co-EGDMA) particles were derivatized with amine group of ethanolamine (EA), diethanolamine, and triethanolamine (TEA) at 80°C through nucleophilic reaction. The performance of synthesized particles was evaluated with the amount of ligand on the particle surfaces, column backpressure, and separation power under HILIC condition. TEA was found to be the best derivatization agent for the separation of toluene, acrylamide, thymine, adenine, and cytosine in respect to resolution factors (>1.5 for all analytes) and theoretical plate numbers (64.562 N/m for acylamide). Upon determination of the best ligand, then the effect of different derivatization temperatures and polymer composition on TEA performance was investigated. Of all the tested polymer compositions, the chromatographic performance of TEA-M-80 (the derivatization of TEA at 80°C together with M polymer composition) was found to be the best.
机译:摘要,在本研究中,使用不同的衍生剂制造新的羟基官能化单分散聚合物亲水性相互作用色谱(HILIC)塔。此外,在HILIC条件下研究了最佳剂和聚合物组合物对分离的衍生化温度的影响。通过使用3-氯-2-羟基丙烯酸甲基丙烯酸酯(HPMA-CL)和乙二醇二甲基丙烯酸二甲基丙烯酸酯(EGDMA)单体,通过接种聚合方法合成单分散 - 多孔亲水颗粒。聚(HPMA-CI-EGDMA)颗粒的氯丙基末端通过乙醇胺(EA),二乙醇胺和三乙醇胺(茶)在80℃下衍生化,通过亲核反应。在HILIC条件下,用颗粒表面,柱背压和分离功率的配体的量评价合成颗粒的性能。发现茶是分离甲苯,丙烯酰胺,胸腺嘧啶,腺嘌呤和胞嘧啶的最佳衍生化剂,以及关于所有分析物的分辨率(> 1.5)和理论板数(酰基酰胺64.562n / m)。在确定最佳配体后,研究了不同衍生化温度和聚合物组合物对茶叶性能的影响。在所有测试的聚合物组合物中,发现TEA-M-80的色谱性能(80℃与M聚合物组合物一起衍生化)是最好的。

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