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Robustness of elastic properties in polymer nanocomposite films examined over the full volume fraction range

机译:在整个体积分数范围内检查的聚合物纳米复合薄膜中弹性性能的稳健性

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摘要

Polymers with nanoparticle inclusions are attractive materials because physical properties can be tuned by varying size and volume fraction range. However, elastic behavior can degrade at higher inclusion fractions when particle-particle contacts become important, and sophisticated measurement techniques are required to study this crossover. Here, we report on the mechanical properties of materials with BaTiO3 nanoparticles (diameters < 10 nm) in a polymer (poly(methyl methacrylate)) matrix, deposited as films in different thickness ranges. Two well-known techniques, time and frequency domain Brillouin light scattering, were employed to probe the composition dependence of their elastic modulus. The time domain experiment revealed the biphasic state of the system at the highest particle volume fraction, whereas frequency domain Brillouin scattering provided comprehensive information on ancillary variables such as refractive index and directionality. Both techniques prove complementary, and can in particular be used to probe the susceptibility of elastic properties in polymer nanocomposites to aging.
机译:具有纳米颗粒夹杂物的聚合物是有吸引力的材料,因为可以通过改变大小和体积分数范围来调节物理性能。但是,当颗粒间的接触变得重要时,弹性行为会在较高的夹杂物含量下降低,因此需要复杂的测量技术来研究这种交叉现象。在这里,我们报道了在聚合物(聚(甲基丙烯酸甲酯))基质中沉积有不同厚度范围的BaTiO3纳米粒子(直径<10 nm)的材料的机械性能。两种众所周知的技术,时域和频域布里渊光散射被用来探测其弹性模量的成分依赖性。时域实验揭示了在最高粒子体积分数下系统的双相状态,而频域布里渊散射提供了有关辅助变量(如折射率和方向性)的全面信息。两种技术证明是互补的,并且特别可以用于探测聚合物纳米复合材料中弹性特性对老化的敏感性。

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