Asandulesa Mihai, Solonaru Ana-Maria, Resmerita Ana-Maria, Honciuc Andrei
"Petru Poni" Institute of Macromolecular Chemistry, 41A Grigore Ghica Voda Alley, 700487 Iasi, Romania.
Polymers (Basel). 2023 Jun 30;15(13):2899. doi: 10.3390/polym15132899.
Nanoparticles are often used as fillers for enhancing various properties of polymer composites such as mechanical, electrical, or dielectric. Among them, polymer nanoparticles are considered ideal contenders because of their compatibility with a polymer matrix. For this reason, it is important that they are synthesized in a surfactant-free form, to obtain predictable surface and structural properties. Here, we synthesized a series of polystyrene nanoparticles (PS NPs), by emulsion polymerization of styrene, using varying amounts of divinylbenzene as a crosslinking agent and sodium 4-vinylbenzenesulfonate as a copolymerizing monomer surfactant-"surfmer". Using "surfmers" we obtained surfactant-free nanoparticles that are monodisperse, with a high degree of thermal stability, as observed by scanning electron microscopy and thermogravimetric investigations. The prepared series of NPs were investigated by means of broadband dielectric spectroscopy and we demonstrate that by fine-tuning their chemical composition, fine changes in their dielectric and thermal properties are obtained. Further, we demonstrate that the physical transformations in the nanoparticles, such as the glass transition, can be predicted by performing the first derivative of dielectric permittivity for all investigated samples. The glass transition temperature of PS NPs appears to be inversely correlated with the dielectric permittivity and the average diameter of NPs.
纳米粒子常被用作填料,以增强聚合物复合材料的各种性能,如机械性能、电学性能或介电性能。其中,聚合物纳米粒子因其与聚合物基体的相容性而被认为是理想的候选材料。因此,以无表面活性剂的形式合成它们很重要,这样才能获得可预测的表面和结构性能。在此,我们通过苯乙烯的乳液聚合反应,使用不同量的二乙烯基苯作为交联剂,4-乙烯基苯磺酸钠作为共聚单体表面活性剂(“表面活性单体”),合成了一系列聚苯乙烯纳米粒子(PS NPs)。通过扫描电子显微镜和热重分析研究发现,使用“表面活性单体”我们获得了单分散、具有高度热稳定性的无表面活性剂纳米粒子。通过宽带介电谱对制备的一系列纳米粒子进行了研究,我们证明通过微调其化学组成,可以使其介电性能和热性能发生细微变化。此外,我们证明通过对所有研究样品的介电常数进行一阶导数运算,可以预测纳米粒子中的物理转变,如玻璃化转变。PS NPs的玻璃化转变温度似乎与介电常数和纳米粒子的平均直径呈负相关。