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Particle localization and hyperuniformity of polymer-grafted nanoparticle materials

机译:聚合物接枝纳米颗粒材料的颗粒定位和超均匀性

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摘要

The properties of materials largely reflect the degree and character of the localization of the molecules comprising them so that the study and characterization of particle localization has central significance in both fundamental science and material design. Soft materials are often comprised of deformable molecules and many of their unique properties derive from the distinct nature of particle localization. We study localization in a model material composed of soft particles, hard nanoparticles with grafted layers of polymers, where the molecular characteristics of the grafted layers allow us to “tune” the softness of their interactions. Soft particles are particular interesting because spatial localization can occur such that density fluctuations on large length scales are suppressed, while the material is disordered at intermediate length scales; such materials are called “disordered hyperuniform”. We use molecular dynamics simulation to study a liquid composed of polymer-grafted nanoparticles (GNP), which exhibit a reversible self-assembly into dynamic polymeric GNP structures below a temperature threshold, suggesting a liquid-gel transition. We calculate a number of spatial and temporal correlations and we find a significant suppression of density fluctuations upon cooling at large length scales, making these materials promising for the practical fabrication of “hyperuniform” materials.
机译:材料的性质在很大程度上反映了组成它们的分子的局部化程度和特征,因此对粒子局部化的研究和表征在基础科学和材料设计中都具有中心意义。软质材料通常由可变形分子组成,并且它们的许多独特特性都源自粒子定位的独特性质。我们研究了模型材料中的定位,该模型材料由软颗粒,具有聚合物接枝层的硬纳米颗粒组成,其中接枝层的分子特征使我们可以“调节”其相互作用的柔软性。软粒子是特别令人感兴趣的,因为可以发生空间局部化,从而可以抑制大长度尺度上的密度波动,而材料在中等长度尺度上却无序。这种材料称为“无序超均匀性”。我们使用分子动力学模拟研究了由聚合物接枝的纳米颗粒(GNP)组成的液体,该液体在温度阈值以下显示可逆的自组装成动态聚合物GNP结构,表明发生了液体-凝胶转变。我们计算了许多空间和时间相关性,发现在大尺度下冷却后密度波动得到了显着抑制,这使这些材料有望用于“超均匀”材料的实际制造。

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  • 年(卷),期 -1(529),5
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  • 页码 1600342
  • 总页数 27
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