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TEMPLATE-DIRECTED SYNTHESIS OF POROUS MATERIALS USING DENDRIMER PRECURSORS

机译:用树枝状前体模板合成多孔材料

摘要

The present invention provides a template-directed self-assembly strategy to integrate the class of materials called dendrimers with periodic mesoporous and macroporous silica materials to create two totally new classes of organic/inorganic nanocomposite materials, which we call periodic mesoporous dendrisilicas (PMeDs) and periodic macroporous dendrisilicas (PMaDs). The unusual combination of inorganic silica and organic dendrimer chemical structures with these scales of porosity and surfaces suggests a myriad of uses for PMeDs and PMaDs, such as the controlled release and uptake of chemicals, chiral separations and catalysis, electronic printing and microelectronic packaging, biomaterial platforms, chromatography stationary phase, and photonic crystal applications. These applications target the synergistic relationship between the dendrimer and the meso- or macroporous structure within a single hierarchical nanostructured organic/inorganic hybrid material.
机译:本发明提供了模板指导的自组装策略,以将称为树枝状大分子的材料与周期性的中孔和大孔二氧化硅材料整合,以产生两种全新的有机/无机纳米复合材料类别,我们将其称为周期性的中孔树枝状二氧化硅(PMeD)和。周期性大孔树枝状二氧化硅(PMaD)。无机二氧化硅和有机树枝状大分子化学结构与这些孔隙率和表面尺度的不寻常组合表明,PMeDs和PMaDs具有多种用途,例如化学物质的控制释放和吸收,手性分离和催化,电子印刷和微电子包装,生物材料平台,色谱固定相和光子晶体应用。这些应用的目标是在单个分级纳米结构的有机/无机杂化材料中,树枝状聚合物与中孔或大孔结构之间的协同关系。

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