University of Bordeaux - CNRS, Centre de Recherche Paul Pascal, Pessac, France.
Soft Matter. 2016 Jun 21;12(23):5154-63. doi: 10.1039/c6sm00461j. Epub 2016 May 19.
This paper discusses the formation of soft porous materials obtained by the polymerization of inverse water-in-silicone (polydimethylsiloxane, PDMS) emulsions. We show that the initial state of the emulsion has a strong impact on the porous structure and properties of the final material. We show that using a surfactant with different solubilities in the emulsion continuous phase (PDMS), it is possible to tune the interaction between emulsion droplets, which leads to materials with either interconnected or isolated pores. These two systems present completely different behavior upon drying, which results in macroporous air-filled materials in the interconnected case and in a collapsed material with low porosity in the second case. Finally, we compare the mechanical and acoustical properties of these two types of bulk polymer monoliths. We also describe the formation of micrometric polymer particles (beads) in these two cases. We show that materials with an interconnected macroporous structure have low mechanical moduli and low sound speed, and are suitable for acoustic applications. The mechanical and acoustical properties of the materials with a collapsed porous structure are similar to those of non-porous silicone, which makes them acoustically inactive.
本文讨论了通过反水/硅氧烷(聚二甲基硅氧烷,PDMS)乳液聚合形成的软多孔材料。我们表明,乳液的初始状态对最终材料的多孔结构和性能有很强的影响。我们表明,使用在乳液连续相(PDMS)中具有不同溶解度的表面活性剂,可以调节乳液液滴之间的相互作用,从而得到具有相互连接或孤立孔的材料。这两种系统在干燥时表现出完全不同的行为,导致在相互连接的情况下得到充满空气的大孔材料,而在第二种情况下得到具有低孔隙率的塌陷材料。最后,我们比较了这两种类型的整体聚合物单体的机械和声学性能。我们还描述了这两种情况下微尺度聚合物颗粒(珠)的形成。我们表明,具有相互连接的大孔结构的材料具有低机械模量和低声速,适用于声学应用。具有塌陷多孔结构的材料的机械和声学性质与非多孔硅酮相似,这使得它们在声学上不活跃。