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Process intensification of encapsulation of functionalized CaCO3 nanoparticles using ultrasound assisted emulsion polymerization

机译:超声辅助乳液聚合强化功能化CaCO3纳米颗粒的工艺

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The present work deals with the use of intensified processes based on the ultrasonic irradiations for the improvement of the process of encapsulation of inorganic nanoparticles into polymer during nanocom-posite synthesis process. The cavitational effects produced due to the use of ultrasonic irradiations have been shown to enhance the dispersion of functional nano-inorganic particles into the monomer during polymerization process. The model system is based on the nanocomposite of poly(methyl methacry-late)/calcium carbonate (PMMA/CaCO3) which has been synthesized by ultrasound assisted semibatch emulsion polymerization. CaCO3 nanoparticles were pretreated with myristic acid in order to improve the compatibility of the monomer with the inorganic particles. TEM image of PMMA/CaCO3 composite particles with well-defined core-shell structure give direct evidence of encapsulation. Effect of encapsulation of CaCO3 particles on thermal properties has been evaluated using thermo-gravimetric methods and it has been observed that the nanocomposites have better thermal stability as compared to the PMMA.
机译:目前的工作涉及基于超声辐照的增强工艺在纳米复合材料合成过程中改善无机纳米颗粒封装到聚合物中的过程。已经显示由于使用超声波辐射而产生的空化作用增强了聚合过程中功能性纳米无机颗粒向单体中的分散。该模型系统基于聚甲基丙烯酸甲酯/碳酸钙(PMMA / CaCO3)的纳米复合材料,该复合材料通过超声辅助半间歇乳液聚合合成。为了提高单体与无机颗粒的相容性,用肉豆蔻酸预处理了CaCO3纳米颗粒。具有明确定义的核-壳结构的PMMA / CaCO3复合颗粒的TEM图像给出了包封的直接证据。已经使用热重法评估了CaCO3颗粒的封装对热性能的影响,并且已经观察到与PMMA相比,纳米复合材料具有更好的热稳定性。

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