Ciogli Alessia, Simone Patrizia, Villani Claudio, Gasparrini Francesco, Laganà Aldo, Capitani Donatella, Marchetti Nicola, Pasti Luisa, Massi Alessandro, Cavazzini Alberto
Dipartimento di Chimica e Tecnologia del Farmaco, University "La Sapienza", Rome (Italy), Fax: (+39) 06-49912780.
Chemistry. 2014 Jun 23;20(26):8138-48. doi: 10.1002/chem.201304330. Epub 2014 Jun 2.
The structural and chromatographic characterization of two novel fluorinated mesoporous materials prepared by covalent reaction of 3-(pentafluorophenyl)propyldimethylchlorosilane and perfluorohexylethyltrichlorosilane with 2.5 μm fully porous silica particles is reported. The adsorbents were characterized by solid state (29)Si, (13)C, and (19)F NMR spectroscopy, low-temperature nitrogen adsorption, elemental analysis (C and F), and various chromatographic measurements, including the determination of adsorption isotherms. The structure and abundance of the different organic surface species, as well as the different silanol types, were determined. In particular, the degree of so-called horizontal polymerization, that is, Si-O-Si bridging parallel to the silica surface due to the reaction, under "quasi-dry" conditions, of trifunctional silanizing agents with the silica surface was quantified. Significant agreement was found between the information provided by solid-state NMR, elemental analysis, and excess isotherms regarding the amount of surface residual silanol groups, on the one hand, and the degree of surface functionalization, on the other. Finally, the kinetic performance of the fluorinated materials as separation media for applications in near-ultrahigh-performance liquid chromatography was evaluated. At reduced velocities of about 5.5 (ca. 600 bar backpressure at room temperature) with 3 mm diameter columns and toluene as test compound, reduced plate heights on the order of 2 were obtained on columns of both adsorbents.
报道了通过3-(五氟苯基)丙基二甲基氯硅烷和全氟己基乙基三氯硅烷与2.5μm全多孔硅胶颗粒的共价反应制备的两种新型氟化介孔材料的结构和色谱表征。通过固态(29)Si、(13)C和(19)F NMR光谱、低温氮吸附、元素分析(C和F)以及各种色谱测量对吸附剂进行了表征,包括吸附等温线的测定。确定了不同有机表面物种以及不同硅醇类型的结构和丰度。特别地,对所谓的水平聚合度进行了量化,即三官能硅烷化剂在“准干燥”条件下与硅胶表面反应导致的平行于硅胶表面的Si-O-Si桥连。一方面,固态NMR、元素分析和过量等温线提供的关于表面残留硅醇基团数量的信息与另一方面的表面功能化程度之间发现了显著的一致性。最后,评估了氟化材料作为近超高效液相色谱应用分离介质的动力学性能。在使用3mm直径柱且以甲苯为测试化合物、约5.5的折合流速(室温下约600bar背压)下,两种吸附剂柱上均获得了约2的折合板高。