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Polydimethylsiloxane microspheres with poly(methyl methacrylate) coating: Modelling, preparation, and characterization

机译:聚(甲基丙烯酸甲酯)涂层的聚二甲基硅氧烷微球:建模,制备和表征

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摘要

Polydimethylsiloxane (PDMS) microspheres are prepared by mixing homogeneous dispersions of vinyl-functional PDMS and a curing agent using mechanical stirring in a series of aqueous solutions, and curing at 80 8C for 2 h. In order to verify the experimental diameter and size distributions of the PDMS microspheres, the Hinze-Kolmogorov theory is applied to predict the mean diameter, and a population balance model as well as the maximum entropy formalism are used to describe the size distribution. Close agreement is found between experimental and theoretical results. Furthermore, vinyl functional PDMS microspheres were coated with poly(methyl methacrylate) (PMMA) by spin coating with different concentrations of PMMA solutions. The quality of the resulting PMMA shell is investigated using rheological measurements at 50 8C with a timesweep procedure. The results strongly suggest that PMMA-coated PDMS microspheres react around 20 times slower than the uncoated ones, and that the PMMA shell significantly hinders the reaction between the PDMS microsphere and cross-linker. Thus the thin PMMA shells are very efficient in protecting the reactive PDMS microspheres, since the PMMA shell forms an impermeable barrier up to 50 8C.
机译:聚二甲基硅氧烷(PDMS)微球是通过在一系列水溶液中机械搅拌混合乙烯基官能团PDMS和固化剂的均匀分散体,并在80 8C下固化2小时而制得的。为了验证PDMS微球的实验直径和尺寸分布,将Hinze-Kolmogorov理论应用于预测平均直径,并使用种群平衡模型和最大熵形式来描述尺寸分布。实验结果和理论结果之间存在密切的一致性。此外,通过旋涂不同浓度的PMMA溶液,用聚甲基丙烯酸甲酯(PMMA)涂覆乙烯基官能团的PDMS微球。在50 8C的温度下通过流变程序对流变学测量结果研究了所得PMMA外壳的质量。结果强烈表明,PMMA包覆的PDMS微球的反应速度比未包覆的微球慢约20倍,并且PMMA壳层显着阻碍了PDMS微球与交联剂之间的反应。因此,薄的PMMA外壳在保护反应性PDMS微球方面非常有效,因为PMMA外壳在高达50 8C的温度下形成了不可渗透的屏障。

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