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首页> 外文期刊>Journal of porous materials >Fabrication of strong and ultra-lightweight silica-based aerogel materials with tailored properties
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Fabrication of strong and ultra-lightweight silica-based aerogel materials with tailored properties

机译:具有定制性能的强力和超轻质二氧化硅气凝胶材料的制造

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Cross-linked silica aerogels are promising, strong, lightweight materials for photolithographic applications. The work presented here details the preparation of ultra-lightweight aerogel materials with tailored properties through the appropriate combination of silica and methacrylate polymer using laser-induced rapid photogelation fabrication technique. For fabrication, an ethanolic solution of hexanediol diacrylate, tetraorthosilicate, Eosin Y and a tertiary amine was prepared. The amounts of reactants were varied to prepare different compositions of aerogel monoliths. The solution was irradiated with a green beam from a low power laser source. The samples, after drying in supercritical ethanol, were characterized using FTIR, BET, SEM, TGA, and a mechanical testing instrument. FTIR data suggests that neither low nor high silica content has an effect on the reactivity of acrylate functionalities during polymer formation. SEM micrographs reveal that variation in silica or polymer content does not produce any phase-separated structures. Instead, uniformly distributed nano-sized polymer-silica structures were obtained for all compositions. Our results suggest that a variety of combinations of mechanical and other properties (such as densities, surface areas, pore sizes, and pore volumes) can be produced through appropriate combination for diverse applications. All these findings provide convincing evidence that the variation of silica and/or polymer content can be used to fabricate aerogels with a variety of properties, which have the depth needed for use in laser-based 3D printing technology of simple or complex structures with nearly any dimensions.
机译:交联的二氧化硅气凝胶是用于光刻应用的有前途的,结实的,轻质的材料。本文介绍的工作详细介绍了通过使用激光诱导的快速光凝胶化制造技术,通过适当组合二氧化硅和甲基丙烯酸酯聚合物来制备具有定制性能的超轻型气凝胶材料。为了制造,制备了己二醇二丙烯酸酯,四原硅酸酯,曙红Y和叔胺的乙醇溶液。改变反应物的量以制备气凝胶整料的不同组成。用来自低功率激光源的绿光束照射溶液。在超临界乙醇中干燥后,使用FTIR,BET,SEM,TGA和机械测试仪器对样品进行表征。 FTIR数据表明,低或高二氧化硅含量都不会影响聚合物形成过程中丙烯酸酯官能团的反应性。 SEM显微照片显示,二氧化硅或聚合物含量的变化不会产生任何相分离的结构。相反,对于所有组合物均获得了均匀分布的纳米级聚合物-二氧化硅结构。我们的结果表明,可以通过适当组合将机械和其他特性(例如密度,表面积,孔径和孔体积)进行多种组合,以实现多种应用。所有这些发现提供了令人信服的证据,即二氧化硅和/或聚合物含量的变化可用于制造具有各种特性的气凝胶,这些气凝胶具有用于基于激光的3D打印技术中具有几乎任何结构的简单或复杂结构所需的深度。尺寸。

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