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The role of surface interactions and morphology in determining thermal dynamic properties of polymer nanocomposites.

机译:表面相互作用和形态在确定聚合物纳米复合材料热力学性质中的作用。

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摘要

Since interfacial properties rely on interactions between polymers and nanoparticles at interfaces, obtaining a minimization of the interfacial energy can be complicated when nanoparticles are added in a polymer blend, even more complicated when the blend is mixed with conventional flame retardant (FR) agents. We here show that the addition of nanoparticles, such as layered silicates and carbon nanotubes (CNTs), could not only enhance the compatibilization of immiscible polymer blends but also improve the degree of the dispersion of FR agents, since the nanoparticles were seen at either the blend interfaces or the FR agents. In addition, we have demonstrated that the addition of the clays can stabilize the blends against further phase segregation, thereby suppressing the formation of either ribbon-like or tubular-like structures along the interfaces during heating. These structures can significantly improve flame retardant properties, such as heat release rate (HRR) and mass loss rate (MLR), which can be evidenced by enhanced thermal conduction within the structures. In spite of these improvements, most polymer blends with the nanoparticles cannot be rendered self-extinguishing unless the conventional FR agents are added. Furthermore, too much added FR agents deteriorate material properties because the FR agents can be classified as an additive. Therefore, we have showed that the FR agents can be directly absorbed on the clay surface, which not only improves the dispersion of FR agents but also results in the exfoliation and/or intercalation in several homopolymers. The strong absorption of FR agents on the nanoparticles can effectively achieve the result of self-extinguishment. This is obtained from the interfaces between the FR agents and the nanoparticles, where a synergy may be attributed to the interfacial activity and the improved thermal conductivity. Finally, we here explain a mechanism of the self-extinguishment of nanocomposites containing both the FR agents and the nanoparticles in terms of the thermal dynamic behaviors of the nanoparticles.
机译:由于界面性质依赖于界面上聚合物和纳米颗粒之间的相互作用,因此,当将纳米颗粒添加到聚合物共混物中时,使界面能最小化可能会很复杂,而当将共混物与常规阻燃剂(FR)混合时,界面能量的最小化将变得更加复杂。我们在这里表明,添加纳米颗粒,例如层状硅酸盐和碳纳米管(CNT),不仅可以增强不混溶的聚合物共混物的相容性,而且可以提高FR剂的分散度,因为在任一处都可以看到纳米颗粒。混合接口或FR代理。另外,我们已经证明,粘土的添加可以使共混物稳定,以防止进一步的相分离,从而抑制了加热过程中沿界面形成带状或管状结构。这些结构可以显着改善阻燃性能,例如放热率(HRR)和质量损失率(MLR),这可以通过增强结构内部的导热性来证明。尽管有这些改进,除非添加常规的FR剂,否则大多数与纳米颗粒的聚合物共混物都无法自熄。此外,由于FR剂可归类为添加剂,因此添加过多的FR剂会降低材料性能。因此,我们已经表明FR试剂可以直接吸收在粘土表面上,这不仅改善了FR试剂的分散性,而且导致了几种均聚物中的剥落和/或嵌入。阻燃剂在纳米颗粒上的强吸收可以有效地达到自熄的效果。这是从FR​​剂和纳米颗粒之间的界面获得的,其中的协同作用可归因于界面活性和改善的导热性。最后,我们就纳米粒子的热动力学行为而言,解释了同时含有FR剂和纳米粒子的纳米复合材料自熄的机制。

著录项

  • 作者

    Pack, Seongchan.;

  • 作者单位

    State University of New York at Stony Brook.;

  • 授予单位 State University of New York at Stony Brook.;
  • 学科 Chemistry Polymer.;Nanotechnology.;Nanoscience.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 170 p.
  • 总页数 170
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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