CAS Key Laboratory of Soft Matter Chemistry, Department of Polymer Science and Engineering, University of Science and Technology of China, Hefei, Anhui 230026, PR China.
Langmuir. 2013 Jan 29;29(4):1010-6. doi: 10.1021/la304806d. Epub 2013 Jan 11.
In this work, an asymmetric swelling-dissolving process of original submicrometer-sized decentered sulfonated polystyrene/silica (SPS/silica) particles in a ternary mixed solvent (water/ethanol/heptane) was first reported. Actinia-like and porous snowman-like SPS/silica composite particles are fabricated through tuning the composition of the ternary mixed solvent. Actinia-like particles, with a silica core embedded in a "blooming" SPS matrix, are obtained when the composition of the mixed solvent is 5 g/5 g/0.1 g (water/ethanol/heptane). If the amount of heptane in the mixed solvent is doubled, then porous snowman-like particles are produced. The TEM and SEM images show that silica particles are exposed in these two anisotropic SPS/silica composite particles compared with the original decentered SPS/silica particles. Considering the particles morphology and the swelling and dissolving performance of SPS in different solvents, the formation of the new-shaped anisotropic SPS/silica composite particles should be attributed to an asymmetric swelling-dissolving process; that is, the swelling-dissolving rate of SPS coating around the protruding silica part is faster than the other part of the composite particles. The anisotropic swelling-dissolving property of polymer/inorganic composite particles inspires a facile way to the fabrication of new composite particles.
在这项工作中,首次报道了原始亚微米偏心磺化聚苯乙烯/二氧化硅(SPS/二氧化硅)颗粒在三元混合溶剂(水/乙醇/庚烷)中的非对称溶胀溶解过程。通过调节三元混合溶剂的组成,可以制备出类水母状和多孔雪人状的 SPS/二氧化硅复合颗粒。当混合溶剂的组成为 5 g/5 g/0.1 g(水/乙醇/庚烷)时,得到具有二氧化硅核嵌入“绽放”SPS 基质的类水母状颗粒。如果混合溶剂中庚烷的量增加一倍,则会生成多孔雪人状颗粒。TEM 和 SEM 图像表明,与原始偏心 SPS/二氧化硅颗粒相比,在这两种各向异性 SPS/二氧化硅复合颗粒中暴露了二氧化硅颗粒。考虑到颗粒形态和 SPS 在不同溶剂中的溶胀溶解性能,新型各向异性 SPS/二氧化硅复合颗粒的形成应归因于非对称溶胀溶解过程;也就是说,突出二氧化硅部分周围的 SPS 涂层的溶胀溶解速率比复合颗粒的其他部分更快。聚合物/无机复合颗粒的各向异性溶胀溶解性能为新型复合颗粒的制备提供了一种简便的方法。