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Preparation of silica nanospheres and porous polymer membranes with controlled morphologies via nanophase separation

机译:通过纳米相分离制备形态可控的二氧化硅纳米球和多孔聚合物膜

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摘要

We successfully synthesized two different structures, silica nanospheres and porous polymer membranes, via nanophase separation, based on a sol-gel process. Silica sol, which was in situ polymerized from tetraorthosilicate, was used as a precursor. Subsequently, it was mixed with a polymer that was used as a matrix component. It was observed that nanophase separation occurred after the mixing of polymer with silica sol and subsequent evaporation of solvents, resulting in organizing various structures, from random network silica structures to silica spheres. In particular, silica nanospheres were produced by manipulating the mixing ratio of polymer to silica sol. The size of silica beads was gradually changed from micro- to nanoscale, depending on the polymer content. At the same time, porous polymer membranes were generated by removing the silica component with hydrofluoric acid. Furthermore, porous carbon membranes were produced using carbon source polymer through the carbonization process.
机译:我们基于溶胶-凝胶工艺通过纳米相分离成功地合成了两种不同的结构,二氧化硅纳米球和多孔聚合物膜。由四原硅酸酯原位聚合的二氧化硅溶胶用作前体。随后,将其与用作基质组分的聚合物混合。观察到,在聚合物与硅溶胶混合并随后蒸发溶剂之后,发生了纳米相分离,从而导致组织了各种结构,从无规网络二氧化硅结构到二氧化硅球。特别地,通过控制聚合物与二氧化硅溶胶的混合比来制备二氧化硅纳米球。二氧化硅珠的尺寸根据聚合物含量从微米级逐渐改变为纳米级。同时,通过用氢氟酸除去二氧化硅组分而产生多孔聚合物膜。此外,使用碳源聚合物通过碳化过程生产了多孔碳膜。

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