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含有MIL-68(Al)的混合有机整体柱用于毛细管高效液相色谱法分离小分子。

Hybrid organic monolithic column containing MIL-68(Al) for the separation of small molecules by capillary HPLC.

作者信息

Peirano Sofía R, Prince Daiana L, Giovannoni Sol, Aguilar Elisabeth Contreras, Rafti Matias, Ceolín Marcelo, Keunchkarian Sonia, Echevarría Romina N, Reta Mario

机构信息

Laboratorio de Investigación y Desarrollo de Métodos Analíticos (LIDMA) (CIC-PBA, CONICET) and División Química Analítica, Facultad de Ciencias Exactas, Universidad Nacional de La Plata, 47 y 115 (B1900AJL), La Plata, Argentina.

Instituto de Investigaciones Fisicoquímicas Teóricas y Aplicadas (INIFTA), Departamento de Química, Facultad de Ciencias Exactas, Universidad Nacional de La Plata, CONICET. 64 y 113, (B1900AJL), La Plata, Argentina.

出版信息

J Chromatogr A. 2024 Sep 27;1733:465258. doi: 10.1016/j.chroma.2024.465258. Epub 2024 Aug 15.

Abstract

A hybrid organic monolithic column made of poly(lauryl methacrylate-co-1,6-hexanediol dimethacrylate) and the metal-organic framework MIL-68(Al) was prepared for the first time. The column was used in capillary liquid chromatography, both in isocratic and gradient elution modes. Separation performance towards small molecules of different chemical nature (polycyclic aromatic hydrocarbons, alkylbenzenes, phenols, etc.) was studied. Monte Carlo simulations were made to both select the proper precursors to obtain empty metal-organic framework micropores in the monolithic polymer and also, to analyze the potential free access of the studied analytes into the micropores (necessary to improve mass transfer and column efficiency). The hereby synthesized metal-organic framework microcrystals allowed obtaining homogeneous hybrid monolithic columns. Adding of MIL-68(Al) (1030 m g BET specific surface area) increased the surface area from 3.9 m g for the parent monolith to 18.2 m g for the hybrid column containing 8 mg mL of the microcrystals. Chromatographic performance of this new column was evaluated by studying retention factors, resolution, and plate counts at room temperature. Different compounds, not completely resolved in the parent monolith, were partially or completely separated after metal-organic framework addition. Using the monolithic column with only 2 mg mL of MIL-68(Al), five alkylbenzenes were completely separated with very symmetrical peak shapes, resolution factors up to 3.60 and plate counts of 4300 plates m for n-hexylbenzene. This value is higher than those obtained by other authors who used organic monolithic columns with embedded metal-organic frameworks to perform separations at room temperature. Additionally, nine polycyclic aromatic hydrocarbons were partially or completely resolved in gradient elution mode. The hybrid monolithic columns exhibited very good intra-day (%RSD=1.9), inter-day (%RSD=2.6), and column-to-column (%RSD=4.3) reproducibility values. Easy and fast column preparation, and versatility to efficiently separate several compounds of different chemical nature in isocratic and gradient mode, makes this new hybrid column a very good option for the analysis of small molecules in capillary (or nano) HPLC.

摘要

首次制备了由聚(甲基丙烯酸月桂酯 - 共 - 1,6 - 己二醇二甲基丙烯酸酯)和金属有机框架MIL - 68(Al)制成的混合有机整体柱。该柱用于毛细管液相色谱,采用等度洗脱和梯度洗脱模式。研究了其对不同化学性质的小分子(多环芳烃、烷基苯、酚类等)的分离性能。进行了蒙特卡罗模拟,以选择合适的前体来在整体聚合物中获得空的金属有机框架微孔,同时分析所研究的分析物进入微孔的潜在自由通道(这对于改善传质和柱效是必要的)。由此合成的金属有机框架微晶使得能够获得均匀的混合整体柱。添加MIL - 68(Al)(BET比表面积为1030 m²/g)使表面积从母体整体柱的3.9 m²/g增加到含有8 mg/mL微晶的混合柱的18.2 m²/g。通过在室温下研究保留因子、分离度和塔板数来评估这种新柱的色谱性能。在母体整体柱中未完全分离的不同化合物,在添加金属有机框架后部分或完全分离。使用仅含有2 mg/mL MIL - 68(Al)的整体柱,五种烷基苯以非常对称的峰形完全分离,分离度因子高达3.60,正己基苯的塔板数为4300块/m。该值高于其他作者使用嵌入金属有机框架的有机整体柱在室温下进行分离所获得的值。此外,在梯度洗脱模式下,九种多环芳烃部分或完全分离。混合整体柱表现出非常好的日内(%RSD = 1.9)、日间(%RSD = 2.6)和柱间(%RSD = 4.3)重现性值。简便快速的柱制备方法以及在等度和梯度模式下有效分离几种不同化学性质化合物的通用性,使得这种新型混合柱成为毛细管(或纳流)HPLC中小分子分析的非常好的选择。

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