Ohio Aerospace Institute, 22800 Cedar Point Road, Brookpark, OH 44142, USA.
ACS Appl Mater Interfaces. 2009 Mar;1(3):621-30. doi: 10.1021/am8001617.
The effect of incorporating an organic linking group, 1,6-bis(trimethoxysilyl)hexane (BTMSH), into the underlying silica structure of a styrene cross-linked silica aerogel is examined. Vinyltrimethoxysilane (VTMS) is used to provide a reactive site on the silica backbone for styrene polymerization. Replacement of up to 88 mol % of the silicon from tetramethoxyorthosilicate with silicon derived from BTMSH and VTMS during the making of silica gels improves the elastic behavior in some formulations of the cross-linked aerogels, as evidenced by measurement of the recovered length after compression of samples to 25% strain. This is especially true for some higher density formulations, which recover nearly 100% of their length after compression to 25% strain twice. The compressive modulus of the more elastic monoliths ranged from 0.2 to 3 MPa. Although some of these monoliths had greatly reduced surface areas, changing the solvent used to produce the gels from methanol to ethanol increased the surface area in one instance from 6 to 220 m(2)/g with little affect on the modulus, elastic recovery, porosity, or density.
考察了在苯乙烯交联硅气凝胶的基础二氧化硅结构中引入有机连接基团 1,6-双(三甲氧基硅基)己烷(BTMSH)的效果。乙烯基三甲氧基硅烷(VTMS)用于为二氧化硅主链提供用于苯乙烯聚合的反应性位点。在制备硅胶时,用 BTMSH 和 VTMS 衍生的硅替代四甲氧基氧硅烷中的高达 88 mol%的硅,可以改善交联气凝胶的某些配方的弹性行为,这可以通过测量压缩至 25%应变的样品的恢复长度来证明。对于一些较高密度的配方尤其如此,这些配方在压缩至 25%应变两次后几乎可以恢复 100%的长度。更具弹性的单体的压缩模量范围为 0.2 至 3 MPa。尽管其中一些单体的比表面积大大降低,但将制备凝胶所用的溶剂从甲醇改为乙醇,在一种情况下将比表面积从 6 增加到 220 m2/g,而对模量、弹性恢复、孔隙率或密度几乎没有影响。