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Straightforward Immobilization of Phosphonic Acids and Phosphoric Acid Esters on Mesoporous Silica and Their Application in an Asymmetric Aldol Reaction

机译:介孔二氧化硅上磷酸和磷酸酯的直接固定及其在不对称羟醛反应中的应用

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摘要

The combined benefits of moisture-stable phosphonic acids and mesoporous silica materials (SBA-15 and MCM-41) as large-surface-area solid supports offer new opportunities for several applications, such as catalysis or drug delivery. We present a comprehensive study of a straightforward synthesis method via direct immobilization of several phosphonic acids and phosphoric acid esters on various mesoporous silicas in a Dean–Stark apparatus with toluene as the solvent. Due to the utilization of azeotropic distillation, there was no need to dry phosphonic acids, phosphoric acid esters, solvents, or silicas prior to synthesis. In addition to modeling phosphonic acids, immobilization of the important biomolecule adenosine monophosphate (AMP) on the porous supports was also investigated. Due to the high surface area of the mesoporous silicas, a possible catalytic application based on immobilization of an organocatalyst for an asymmetric aldol reaction is discussed.
机译:湿气稳定的膦酸和中孔二氧化硅材料(SBA-15和MCM-41)的结合优势可作为大表面积固体载体,为多种应用提供了新的机遇,例如催化或药物输送。我们通过在迪安-斯塔克装置中以甲苯为溶剂,将几种膦酸和磷酸酯直接固定在各种介孔二氧化硅上的简单合成方法的全面研究。由于采用了共沸蒸馏,因此在合成之前无需干燥膦酸,磷酸酯,溶剂或二氧化硅。除了对膦酸进行建模之外,还研究了重要生物分子单磷酸腺苷(AMP)在多孔载体上的固定。由于介孔二氧化硅的表面积大,因此讨论了基于固定化有机催化剂进行不对称羟醛反应的可能的催化应用。

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