Preparation and chromatographic properties of ordered macroporous polymer monoliths by colloidal crystal templating method

IF 4 3区 化学 Q2 POLYMER SCIENCE Polymer Bulletin Pub Date : 2024-10-04 DOI:10.1007/s00289-024-05529-x
Mingao Li, Huidan Zhang, Wenlin Zhong, Jiming Ou, Jianfeng He, Quanzhou Wu
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Abstract

The ability to control the homogeneous morphology and tune the macropore size is of great significance for tailoring monolithic columns with ideal separation performance. In this paper, the preparation of three-dimensionally ordered macroporous polymer monoliths (OMMC) by a colloidal crystal templating method is reported. Scanning electron microscopy (SEM), Fourier transform infrared spectroscopy (FTIR), nitrogen adsorption and thermal analysis were used to characterize the chemical composition, pore structure and thermal stability of the OMMC. The results demonstrated that ordered macroporous carboxyl-functionalized polyester monolithic column (OEMC) and ordered macroporous carboxyl-functionalized polystyrene monolithic column (OSMC) could be successfully prepared by using SiO2 colloidal crystals as porogen. Both OEMC and OSMC had a three-dimensionally ordered macroporous structure with high porosity, submicron-scale pore walls and macropores. Their macropore diameters were easily controlled from 192 to 772 nm by using different monodisperse SiO2 beads. Compared to OEMC, OSMC had higher mechanical strength and showed greater solvent resistance to water and methanol. The permeability of OSMCs was 1.33 ~ 3.59 × 10–15 m2. Depending on the electrostatic force, a 4.6 × 10 mm short column had an ability to distinguish between lysozyme (LYZ) and bovine serum albumin (BSA). The highest column efficiencies (n) corresponding to LYZ and BSA were 5494 and 1992 N·m−1, respectively. This study will provide valuable guiding suggestions for the development of 3DOM monolithic columns.

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胶体晶体模板法制备有序大孔聚合物单片及其色谱特性
控制均匀形态和调节大孔大小的能力对于定制具有理想分离性能的整体柱具有重要意义。本文报道了用胶体晶体模板法制备三维有序大孔聚合物单体(OMMC)。利用扫描电镜(SEM)、傅里叶变换红外光谱(FTIR)、氮气吸附和热分析对OMMC的化学组成、孔隙结构和热稳定性进行了表征。结果表明,以SiO2胶体晶体为成孔剂,可以成功制备有序大孔羧基功能化聚酯整体柱(OEMC)和有序大孔羧基功能化聚苯乙烯整体柱(OSMC)。OEMC和OSMC均具有高孔隙率、亚微米级孔壁和大孔的三维有序大孔结构。采用不同的单分散SiO2微球,可以很容易地将其大孔直径控制在192 ~ 772 nm之间。与OEMC相比,OSMC具有更高的机械强度,对水和甲醇具有更强的耐溶剂性。OSMCs的渗透率为1.33 ~ 3.59 × 10-15 m2。根据静电力,4.6 × 10 mm的短柱有能力区分溶菌酶(LYZ)和牛血清白蛋白(BSA)。LYZ和BSA对应的最高色谱柱效率(n)分别为5494和1992 n·m−1。本研究将为3DOM整体柱的发展提供有价值的指导意见。
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文献相关原料
公司名称
产品信息
麦克林
bovine serum albumin (BSA)
麦克林
Lysozyme (LYZ)
阿拉丁
ethylene glycol dimethacrylate (EDMA)
阿拉丁
α-methacrylic acid
阿拉丁
Divinylbenzene (DVB)
来源期刊
Polymer Bulletin
Polymer Bulletin 化学-高分子科学
CiteScore
6.00
自引率
6.20%
发文量
0
审稿时长
5.5 months
期刊介绍: "Polymer Bulletin" is a comprehensive academic journal on polymer science founded in 1988. It was founded under the initiative of the late Mr. Wang Baoren, a famous Chinese chemist and educator. This journal is co-sponsored by the Chinese Chemical Society, the Institute of Chemistry, and the Chinese Academy of Sciences and is supervised by the China Association for Science and Technology. It is a core journal and is publicly distributed at home and abroad. "Polymer Bulletin" is a monthly magazine with multiple columns, including a project application guide, outlook, review, research papers, highlight reviews, polymer education and teaching, information sharing, interviews, polymer science popularization, etc. The journal is included in the CSCD Chinese Science Citation Database. It serves as the source journal for Chinese scientific and technological paper statistics and the source journal of Peking University's "Overview of Chinese Core Journals."
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