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聚乙二醇对硅胶整体毛细管柱孔结构和分离效率的影响。

Effect of polyethylene glycol on pore structure and separation efficiency of silica-based monolithic capillary columns.

作者信息

Hara Takeshi, Desmet Gert, Baron Gino V, Minakuchi Hiroyoshi, Eeltink Sebastiaan

机构信息

Vrije Universiteit Brussel, Department of Chemical Engineering, Pleinlaan 2, B-1050 Brussels, Belgium.

Kyoto Monotech Ltd., 1095 Shuzei-cho, Kamigyo-ku, Kyoto 602-8155, Japan.

出版信息

J Chromatogr A. 2016 Apr 15;1442:42-52. doi: 10.1016/j.chroma.2016.03.009. Epub 2016 Mar 7.

Abstract

Monolithic silica materials (first unclad monolith rods, then monolithic capillary columns) were prepared using various amounts of polyethylene glycols (PEGs) with different molecular weight (MW). The monolith rods were used to examine the mesoporosity by argon physisorption technique, and the macroporosity by mercury intrusion porosimetry. Subsequently, silica-based monolithic capillary columns with an inner diameter of 100 μm were produced using the same preparation conditions as used for the rods. The results obtained with the monolith rods showed the following important findings: (1) it is feasible to fabricate monolithic silica rods possessing macropore size of 0.5-1.4 μm by tuning the amount of PEGs (independently of the MW), whereas the macropore volume and the mesoporosity remain similar. (2) the smallest macropore size (0.5 μm) rod prepared with PEG having a MW=20,000g/mol provided a narrower macropore size distribution than with PEG with MW=10,000g/mol. The monolithic capillary columns produced with the different PEG type showed similar retention factors for hexylbenzene (k=2.3-2.4) and similar t0-based column permeability (Kv0=2.3-2.4×10(-14)m(2)) in 20:80% (v/v) water:methanol, as expected from the results obtained with the monolith rods. The column prepared with PEG of MW=20,000g/mol gave a plate height of H=4.0 μm for hexylbenzene at an optimal linear velocity of u0=2.6mm/s in 20:80% (v/v) water containing 0.1% formic acid:acetonitrile. To the best of our knowledge, this is the lowest plate height ever recorded for a monolithic column. Comparing the kinetic performance at 30MPa shows that the best monolithic silica column obtained in the present study performs better than the second-generation monolithic silica columns developed up till now in the practically most relevant range of plate numbers (N≤40,000). In this range, the performance is now similar to that of 2.7 μm core-shell particle columns.

摘要

使用不同分子量(MW)的各种聚乙二醇(PEG)制备了整体式二氧化硅材料(首先是未包覆的整体式棒材,然后是整体式毛细管柱)。整体式棒材用于通过氩气物理吸附技术检测介孔率,通过压汞法检测大孔率。随后,使用与制备棒材相同的制备条件生产内径为100μm的二氧化硅基整体式毛细管柱。用整体式棒材获得的结果显示了以下重要发现:(1)通过调节PEG的用量(与MW无关)来制造大孔尺寸为0.5 - 1.4μm的整体式二氧化硅棒材是可行的,而大孔体积和介孔率保持相似。(2)用MW = 20,000g/mol的PEG制备的最小大孔尺寸(0.5μm)的棒材比用MW = 10,000g/mol的PEG提供更窄的大孔尺寸分布。如用整体式棒材获得的结果所预期的那样,用不同类型PEG制备的整体式毛细管柱在20:80%(v/v)水:甲醇中对己基苯显示出相似的保留因子(k = 2.3 - 2.4)和相似的基于t0的柱渗透率(Kv0 = 2.3 - 2.4×10(-14)m(2))。用MW = 20,000g/mol的PEG制备的柱在含有0.1%甲酸的2:8(v/v)水:乙腈中,在最佳线性流速u0 = 2.6mm/s下对己基苯的板高为H = 4.0μm。据我们所知,这是整体式柱所记录的最低板高。在30MPa下比较动力学性能表明,本研究中获得的最佳整体式二氧化硅柱在实际最相关的板数范围(N≤40,000)内比迄今为止开发的第二代整体式二氧化硅柱表现更好。在这个范围内,性能现在与2.7μm核壳颗粒柱相似。

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