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Polymer particles filled with multiple colloidal silica via in situ sol-gel process and their thermal property

机译:通过原位溶胶 - 凝胶工艺及其热性填充多种胶体二氧化硅的聚合物颗粒及其热性质

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摘要

The in situ formation of dielectric silica (SiO2) particles was carried out in the presence of temperature-responsive poly(N-isopropylacrylamide) particles. Unlike the typical sol-gel method used to prepare various SiO2 particles, the highly uniform growth of SiO2 particles was achieved within the cross-linked polymer particles (i.e., the polymer particles were filled with the SiO2 particles) simply by utilizing interfacial interactions, including the van der Waals attractive force and hydrogen bonding in nanoscale environments. The structural and morphological features as well as the thermal behaviors of these composites were thoroughly examined by electron microscopes, dynamic light scattering, and thermal analyzers. In particular, the thermal properties of these composites were completely different from the bare polymer, SiO2 particles, and their mixtures, which clearly suggested the successful incorporation of multiple SiO2 particles within the cross-linked polymer particles. Similarly, titanium oxide (TiO2) particles were easily embedded within the polymer particle template which exhibited improved overall properties. As a whole, understanding in situ formation of nanoscale inorganic particles within polymer particle templates can allow for designing novel composite materials possessing enhanced chemical and physical properties.
机译:在温度响应性聚(N-异丙基丙烯酰胺)颗粒存在下进行介电二氧化硅(SiO 2)颗粒的原位形成。与用于制备各种SiO 2颗粒的典型溶胶 - 凝胶方法不同,在交联的聚合物颗粒内实现SiO 2颗粒的高度均匀生长(即,通过利用界面相互作用,包括包括界面相互作用,所述SiO 2颗粒在所述聚合物颗粒中填充有SiO 2颗粒) van der Wa族在纳米级环境中的吸引力和氢键合。通过电子显微镜,动态光散射和热分析仪彻底检查这些复合材料的结构和形态特征以及这些复合材料的热行为。特别地,这些复合材料的热性质与裸聚合物,SiO 2颗粒及其混合物完全不同,其清楚地表明在交联聚合物颗粒内成功地掺入多个SiO 2颗粒。类似地,氧化钛(TiO 2)颗粒容易嵌入聚合物颗粒模板内,该聚合物颗粒模板具有改善的整体性质。总的来说,在聚合物颗粒模板中原位形成纳米级无机颗粒可以允许设计具有增强化学和物理性质的新型复合材料。

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