Formation of Hierarchical Structure in Microspheres Fabricated with Microfluidic Method based on Homopolymer Blend

材料科学 共聚物 聚合物 相(物质) 甲基丙烯酸甲酯 复合数 蒸发 化学工程 苯乙烯 高分子化学 复合材料 化学 有机化学 热力学 物理 工程类
作者
Ryoka Shoji,Saki Yoshida,Shinji Kanehashi,Kazuo Okamoto,Ma Guanghui,Kenji Ogino
出处
期刊:Journal of fiber science and technology [Society of Fiber Science & Technology Japan]
卷期号:77 (3): 128-135
标识
DOI:10.2115/fiberst.2021-0012
摘要

Hierarchically unique morphologies were observed inside microspheres with a diameter of 70-80 碌m fabricated with the combination of a microfluidic emulsification and a solvent-evaporation method, which were based on binary polymer blends consisting of poly(styrene) (PS) / poly(methyl methacrylate) (PMMA) and poly [4-(N,N-diphenylamino)styrene] (PDAS) / PMMA. The phase separated structure in composites was dependent on type of hydrophobic polymer, the molecular weight of polymers, and the evaporation rate. The particles prepared from high-molecular weight components exhibited macroscopically phase separated structure (incomplete core-shell). In addition, PS / PMMA composite showed the hierarchical microscopic phase separated structure, spherical PMMA domains dispersed in the PS-rich core in the macroscopic core-shell structure. Low molecular PS / PMMA composite formed macroscopically homogeneous, but microscopically bi-continuous phase separated structure. Low molecular PDAS / PMMA composite also afforded the hierarchical structure, where the macroscopical core-shell structure (pseudo core-shell) existed, and the shell contained dispersed micron-sized PDAS domain in PMMA phase, and the core exhibited the bi-continuous structure comprised both components. This hierarchical structure is considered to be formed due to the kinetical limitation, and this was more simplified and thermodynamically more stable structure (sea-island) by lowering the evaporation rate. It is noteworthy that the uniform sized microspheres with hierarchical structure were fabricated only from homopolymer blends without the assist of block or graft copolymer. 漏 2021 The Society of Fiber Science and Technology, Japan
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