Department of Chemical Engineering, Case Western Reserve University, Cleveland, Ohio 44106, USA.
Langmuir. 2010 Jul 20;26(14):12198-202. doi: 10.1021/la100874r.
The effects of electrolyte and polymer loadings on formation, density, and mechanical properties of clay aerogels have been investigated. Coherent aerogels were formed at all tested concentrations except at a combination of low electrolyte (<0.04 M) and polymer (<1% w/v) concentrations because of partial clay flocculation. The compressive modulus and yield strength of the aerogels containing poly(vinyl alcohol) are sensitive to electrolyte loading at low polymer concentration but are otherwise insensitive. Mechanical properties show power law dependence on aerogel density, which depends mainly on polymer loading. The power law exponent for the compressive modulus is 3.74 when the relative density is used in the model and 5.7 when the measured bulk density is used instead. These high exponent values are attributed to the layered microstructure of these aerogels.
研究了电解质和聚合物负载对粘土气凝胶的形成、密度和机械性能的影响。在所有测试的浓度下都形成了均匀的气凝胶,除了在低电解质(<0.04 M)和低聚合物(<1% w/v)浓度的组合下,因为部分粘土絮凝。含有聚乙烯醇的气凝胶的压缩模量和屈服强度对低聚合物浓度下的电解质负载敏感,但在其他方面不敏感。机械性能对气凝胶密度呈幂律依赖性,主要取决于聚合物负载。当模型中使用相对密度时,压缩模量的幂律指数为 3.74,而当使用测量的体密度代替时,指数为 5.7。这些高指数值归因于这些气凝胶的层状微观结构。