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A design of experiment approach to the sol–gel synthesis of titania monoliths for chromatographic applications

机译:用于色谱应用的二氧化钛整料溶胶-凝胶合成实验方法的设计

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A design of experiement approach is described for the optimization of the microscopic morphology of macro-mesoporous titania monoliths that were elaborated for the chromatographic enrichment of phosphorylated compounds. The monolithic titania gels were formed via an alkoxy-derived sol–gel route in association with a phase separation mechanism. The synthesis was performed at mild temperatures of gelation using starting mixtures of titanium n-propoxide, hydrochloric acid, N-methylformamide, water, and poly (ethylene oxide). The gelation temperature and the chemical compositions of N-methylformamide, water, and poly (ethylene oxide) were chosen as the most relevant experimental factors of the sol–gel process. Using the sizes of the skeletons and macropores as morphological descriptors of the dried porous monoliths, the statistical analyses simultaneously revealed the effects and interactions between the different factors. Crack-free TiO2 monolithic rods of 8 to 10 cm long with well-defined co-continuous macropores and micro-structured skeletons were obtained after selection of the sol–gel parameters and optimization of the drying and heat-treatment steps of the gels. The bimodal texture of the rods exhibited macropores of 1.5 μm and mesopores centered at 5.2 nm with a total surface area of 140 m2 g−1. The ability of the macro-mesoporous titania rods to selectively bind phosphorylated compounds was demonstrated for O-phosphoamino acids (P-Ser, P-Thr, P-Tyr).
机译:描述了一种实验方法的设计,用于优化宏观中孔二氧化钛整料的微观形貌,精心设计用于磷酸化化合物的色谱富集。整体式二氧化钛凝胶是通过烷氧基衍生的溶胶-凝胶途径结合相分离机理形成的。使用正丙醇钛,盐酸,N-甲基甲酰胺,水和聚环氧乙烷的起始混合物,在温和的胶凝温度下进行合成。 N-甲基甲酰胺,水和聚环氧乙烷的胶凝温度和化学成分被选为溶胶-凝胶过程中最相关的实验因素。使用骨架和大孔的大小作为干燥多孔整料的形态描述,统计分析同时揭示了不同因素之间的影响和相互作用。选择溶胶-凝胶参数并优化干燥和加热后,获得了无裂纹的TiO 2 整体棒,长度为8至10 cm,具有明确的共连续大孔和微结构骨架-凝胶的处理步骤。棒的双峰织构具有1.5μm的大孔和以5.2 nm为中心的中孔,总表面积为140 m 2 g -1 。对于O-磷酸氨基酸(P-Ser,P-Thr,P-Tyr),证明了大中孔二氧化钛棒选择性结合磷酸化化合物的能力。

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