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Porous Gel Coatings Obtained by Phase Separation in ORMOSIL System

机译:通过在ormosil系统中分离获得的多孔凝胶涂层

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Macroporous silicate thick films were prepared by a sol-gel dip-coating method accompanied by the phase separation using methyl-trimethoxysilane(MTMS),nitric acid and dimethylformamide(DMF)as starting components.The morphology of the film varied to a large extent depending on the time elapsed after the hydrolysis until the dipping of the coating solution.On a glass substrate,the films prepared by early dipping had inhomogeneous submicrometer-sized pores on the surface of the film.At increased reaction times,relatively narrow sized isolated macropores were observed and their size gradually decreased with the increase of reaction time.On a polyester substrate,in contrast,micrometer-sized isolated spherical gel domains were homogeneously deposited by earlier dippings.With an increase of reaction time,the volume fraction of the gel phase increased,then the morphology of the coating transformed into co-continuous gel domains and macropores,and finally inverted into the continuous gel domains with isolated macropores.The overall morphological variation with the reaction time was explained in terms of the phase separation and the structure freezing by the forced gelation,both of which were induced by the evaporation of methanol during the dipping operation.
机译:通过使用甲基三甲氧基硅烷(MTM),硝酸和二甲基甲酰胺(DMF)作为起始组分,通过伴随相分离的溶胶 - 凝胶浸涂方法制备大孔硅酸盐厚膜。根据起始组分,薄膜的形态变化在很大程度上取决于在水解后经过的时间直到涂料溶液浸渍。玻璃基板,通过早期浸渍制备的薄膜在薄膜表面上具有不均匀的亚微米尺寸的孔。该薄膜的尺寸孔隙率增加了反应时间,相对较窄的尺寸的分离的宏粒观察到的是,随着反应时间的增加,它们的尺寸逐渐减小。相反,相比之下,通过早期的掺杂,聚酯底物均匀地沉积微米尺寸的分离的球形凝胶结构域。随着反应时间的增加,凝胶相的体积分数增加,然后将涂层的形态转化成共连凝胶结构域和大孔,最后倒入连续凝胶结构域中与反应时间分离macropores.The整体形态变异S为在相分离并通过强制凝胶化,这两者的浸渍操作期间被甲醇诱导的蒸发冻结结构来解释。

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