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Multiscale templating of siloxane gels via polymerization-induced phase separation

机译:通过聚合诱导相分离对硅氧烷凝胶进行多尺度模板化

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摘要

By combining the micellar templating in nanometer-scale with the polymerization-induced phase separation in micrometer-scale, we can synthesize monolithic silica or silsesquioxane gel materials with hierarchical well-defined macropores and shape-controlled mesopores. Depending on the mechanism of enhancing micellar-templating of siloxane oligomers, macroframeworks containing long-range-ordered cylindrical mesopores with different degrees of order have been produced. Alkylene-bridged silicon alkoxides can also be prepared into similarly hierarchical porous structures with broadened variations in framework morphology. These examples demonstrate the versatility of using phase-separation in micellar-templated gelling systems to obtain well-defined macroporous structures.
机译:通过将纳米尺度的胶束模板与微米尺度的聚合诱导相分离相结合,我们可以合成具有分层明确大孔和形状控制介孔的整体二氧化硅或倍半硅氧烷凝胶材料。根据增强硅氧烷低聚物胶束模板化的机理,已经产生了含有不同有序的长程有序圆柱形介孔的宏观框架。烷基桥接硅醇盐也可以制备成类似的多级多孔结构,其骨架形态变化更大。这些实例证明了在胶束模板胶凝系统中使用相分离来获得明确定义的大孔结构的多功能性。

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