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Synthesis and morphological characterization of phenyl-modified macroporous-mesoporous hybrid silica monoliths

机译:苯基改性大孔 - 介孔杂交硅胶石英型杂交型石英的合成及形态学特性

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Compared with pure silica-based or organic-polymer monoliths, hybrid organic-silica monoliths offer the combined advantages of mechanically strong stationary phases, simpler preparation protocols, resistance to swelling and shrinking in many solvents and better pH stability. Comprehensive data on the systematic characterization of the pore space morphology of hybrid organic-silica monoliths and their connection to pure silica-based monoliths are still scarce in the literature. In this work, we adapted the general sol-gel procedure with phenyltrimethoxysilane and tetramethoxysilane as precursors to prepare phenylmodified macroporous-mesoporous silica monoliths via spinodal decomposition involving poly(ethylene glycol). Effects of polycondensation temperature and poly(ethylene glycol) amount were investigated with respect to the corresponding macropore space morphology. We characterized the monoliths by thermogravimetric analysis and infrared spectroscopy (phenyl-modification), nitrogen physisorption and scanning electron microscopy (meso-and macropores) as well as confocal laser scanning microscopy for three-dimensional reconstruction of the macropore space morphology. The statistical analysis of a reconstruction by chord length distributions allowed us to assess the monoliths macropore space heterogeneity through a quantitative approach. Relying exclusively on image analysis, we provide an accurate and model-free description of the void space distribution. Complementary macroporosity profiles were recorded to identify macroscopic heterogeneities inside a monolith. Analyzed structural features are connected to key transport properties of the macropore space. Phenyl-modified monoliths from this work were compared with previous pure silica-based and hybrid organic-silica monoliths regarding the bulk homogeneity of the monoliths and the critical wall region in capillary column format. The comparison with a conventional C18-silica monolith demonstrated a selectivity tuning with the phenyl-modified silica monoliths by pi-pi-interactions between the stationary phase and aromatic analytes. Application of the phenyl-modified monoliths in capillary liquid chromatography reflected the selectivity behaviour of commercial phenyl-modified silica particles, but with the advantage of a higher separation efficiency for the monolithic stationary phase.
机译:与纯二氧化硅或有机聚合物整料相比,杂交有机二氧化硅雄性单极性提供机械强的固定阶段的合并优势,更简单的制备方案,抗溶胀性和在许多溶剂中收缩和更好的pH稳定性。关于杂种有机二氧化硅全石的孔隙空间形态及其与纯二氧化硅基整料的连接的综合数据仍然在文献中稀缺。在这项工作中,我们将苯基三甲氧基硅烷和四甲氧基硅烷的一般溶胶 - 凝胶法作为前体,通过涉及聚(乙二醇)的纺丝镜分解制备苯基浆液的大孔介孔二氧化硅整料。相应的大孔空间形态研究了缩聚温度和聚(乙二醇)量的影响。我们通过热重分析和红外光谱(苯基 - 改性),氮原料和扫描电子显微镜(Meso-and Macopores)以及共聚焦激光扫描显微镜进行了表征整理料,用于大孔空间形态的三维重建。 Chord长度分布的重建的统计分析使我们通过定量方法评估整体巨孔空间异质性。专门对图像分析依赖,我们提供了无效空间分布的准确和模型描述。记录互补的巨孔曲线以鉴定整料内的宏观异质性。分析的结构特征连接到宏观空间的关键传输特性。将来自该作品的苯基改性的单片与先前的纯二氧化硅和杂交有机二氧化硅全氧化钛进行比较,关于整料的本体均匀性和毛细管柱状形式的临界壁区域。与常规C18-二氧化硅料理的比较显示通过固定相和芳族分析物之间的PI-PI相互作用与苯基改性二氧化硅整料进行选择性调节。苯基改性的整料在毛细管液相色谱中的应用反映了商业苯基改性二氧化硅颗粒的选择性行为,但是具有较高的单片固定相的分离效率的优点。

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