Department of Polymer Engineering, University of Akron, Akron, Ohio 44325-0301, United States.
ACS Appl Mater Interfaces. 2011 Mar;3(3):613-26. doi: 10.1021/am200007n. Epub 2011 Mar 1.
Silica aerogels are highly porous solid materials consisting of three-dimensional networks of silica particles and are typically obtained by removing the liquid in silica gels under supercritical conditions. Several unique attributes such as extremely low thermal conductivity and low density make silica aerogels excellent candidates in the quest for thermal insulation materials used in space missions. However, native silica aerogels are fragile at relatively low stresses. More durable aerogels with higher strength and stiffness are obtained by proper selection of silane precursors and by reinforcement with polymers. This paper first presents a brief review of the literature on methods of silica aerogel reinforcement and then discusses our recent activities in improving not only the strength but also the elastic response of polymer-reinforced silica aerogels. Several alkyl-linked bis-silanes were used in promoting flexibility of the silica networks in conjunction with polymer reinforcement by epoxy.
硅气凝胶是一种高度多孔的固体材料,由二氧化硅颗粒的三维网络组成,通常是通过在超临界条件下除去硅胶中的液体而得到的。极低的热导率和低密度等独特属性使硅气凝胶成为太空任务中隔热材料的理想选择。然而,天然硅气凝胶在相对较低的应力下易碎。通过适当选择硅烷前体并通过聚合物增强,可以获得更耐用、强度更高、刚性更大的气凝胶。本文首先简要回顾了硅气凝胶增强方法的文献,然后讨论了我们最近在提高聚合物增强硅气凝胶的强度和弹性响应方面的活动。几种烷基链接的双硅烷与环氧树脂增强聚合物一起使用,以提高二氧化硅网络的柔韧性。