首页> 外文期刊>Bulletin of the Korean Chemical Society >Application of Mesoporous Silica Foam for Immobilization of Salen Complexes in Chiral Intermediates Synthesis
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Application of Mesoporous Silica Foam for Immobilization of Salen Complexes in Chiral Intermediates Synthesis

机译:介孔二氧化硅泡沫在Salen配合物固定化手性中间体合成中的应用

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摘要

A route to synthesize porous materials with a hierarchical micro/meso/macroscopic pore system was investigated. Meso/macroporous monolithic silica foams with a large pore size could be fabricated from a mixture of monodispersed PMMA beads and SBA-15, -16 sol solutions. The size, bulk shape and density of the mesoporous monolithic foam could be controlled by the container and the heat treatment temperature. Drying at temperatures higher than 300 degrees C resulted in an expansion of the SBA silica sol and its solidification to form the mesoporous foams. In contrast, only a dense silica monolith was obtained after full evaporation of the solvent at room temperature without releasing the foam structure in the monolithic body. A large fraction of macroporosity in three dimensions was formed in the monolith body, and the remaining silica walls exhibited uniform mesoporosity. Hydrolytic and phenolic ring-opening of epoxides were performed successfully using chiral (salen)Co-BF3 complex-immobilized catalysts in the packed bed of a continuous flow system. Very high catalytic activity with desirable enantioselectivity was obtained in asymmetric catalysis.
机译:研究了一种通过分级的微观/介观/宏观孔隙系统合成多孔材料的途径。可以从单分散的PMMA珠粒和SBA-15,-16溶胶溶液的混合物中制备具有大孔径的中观/大块整体硅胶泡沫。介孔整体泡沫的大小,体积形状和密度可以通过容器和热处理温度来控制。在高于300℃的温度下干燥导致SBA硅溶胶膨胀并固化以形成中孔泡沫。相反,在室温下溶剂完全蒸发之后,仅获得致密的二氧化硅单块而没有在单块体中释放泡沫结构。在整体结构中形成了很大一部分的三维大孔,而其余的二氧化硅壁则显示出均匀的中孔。使用手性(salen)Co-BF3配合物固定的催化剂在连续流系统的填充床中成功进行了环氧化合物的水解和酚类开环。在不对称催化中获得了很高的催化活性和理想的对映选择性。

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