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Periodic Mesoporous Organosilicas(PMOs):Nanostructured Organic-Inorganic Hybrid Materials

机译:周期性中孔有机硅(PMOS):纳米结构有机 - 无机杂化材料

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Lateral thinking in biomimetic materials chemistry has permitted chemists to create fascinating structures that mimic the biomaterials optimized by Nature.The integration of organic and inorganic chemistry at multiple length scales gives optimal performance characteristics to biomaterials,such as bone.In a similar fashion,lateral thinking in our lab has enabled us to consolidate the chemistry of inorganic surfactant-templated mesoporous materials with the organic-inorganic hybrid structure of amorphous xerogels.A new class of materials,periodic mesoporous organosilicas(PMOs),has emerged that marries organic and solid-state chemistry in the channels of hexagonally ordered mesoporous materials.Various organic and organometallic groups may be integrated into the framework,creating materials with novel,tunable properties.Surfactant can be solvent-extracted or ion-exchanged to create a high surface area PMO with the framework and the organic group intact.This renders the organic groups accessible for reaction to give a new type of"chemistry of the channels".
机译:在仿生材料化学横向思维已经允许化学家创建引人入胜结构,其模仿由Nature.The集成在多个长度尺度的有机和无机化学优化的生物材料赋予了最佳的性能特性的生物材料,如bone.In类似的方式,横向思维在我们的实验室中,使我们能够将无机表面活性剂模板化的化学性与无定形Xerogels的有机无机杂化结构巩固。新型材料,周期性介孔有机硅(PMOS),出现了有机和固态的婚姻六角有介孔材料的通道中的化学。可以将有机和有机金属组集成到框架中,用新颖的,可调性质的材料产生材料。耐胶质剂可以是溶剂提取的或离子交换,以产生具有框架的高表面积PMO。和有机组完整。这使得有机群体acce对反应的影响,给出一种新型的“渠道化学”。

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