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Waterlike anomalies in hard core-soft shell nanoparticles using an effective potential approach: Pinned vs adsorbed polymers

机译:使用有效潜在方法的硬核 - 软壳纳米粒子中的水状异常:固定Vs吸附聚合物

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摘要

In this work, a two dimensional system of polymer-grafted nanoparticles is analyzed using large-scale Langevin dynamics simulations. Effective core-softened potentials were obtained for two cases: one where the polymers are free to rotate around the nanoparticle core and a second where the polymers are fixed, with a 45° angle between them. The use of effective core-softened potentials allows us to explore the complete system phase space. In this way, the PT, Tρ, and Pρ phase diagrams for each potential were obtained, with all fluid and solid phases. The phase boundaries were defined analyzing the specific heat at constant pressure, system mean square displacement, radial distribution function, and discontinuities in the density-pressure phase diagram. Also, due to the competition in the system, we have observed the presence of waterlike anomalies, such as the temperature of maximum density (TMD)-in addition with a tendency of the TMD to move to lower temperatures (negative slope)-and the diffusion anomaly. Different morphologies (stripes, honeycomb, and amorphous) for each nanoparticle were observed. We observed that for the fixed polymer case, the waterlike anomalies are originated from the competition between the potential characteristic length scales, while for the free to rotate case, the anomalies arise due to a smaller region of stability in the phase diagram, and no competition between the scales was observed.
机译:在这项工作中,使用大规模的Langevin动力学模拟分析了两种聚合物接枝纳米粒子的系统。获得有效的核心软化电位,两种情况下得出:聚合物在纳米颗粒核心周围旋转的情况下,它们在它们之间具有45°角,聚合物可以自由旋转。使用有效的核心软化潜力使我们能够探索完整的系统阶段空间。以这种方式,获得每个电位的Pt,tρ和pρ相图,所有流体和固相。定义相界限在密度压力相图中的恒定压力,系统均方位移,径向分布函数和不连续性处分分析特定热量。此外,由于系统的竞争,我们已经观察到存在的存在不含水状异常,例如最大密度(TMD)的温度(TMD) - in加入TMD的趋势,以移动到较低的温度(负斜率) - 以及扩散异常。观察到每个纳米颗粒的不同形态(条纹,蜂窝状和非晶态)。我们观察到,对于固定的聚合物壳体,水状异常源于潜在特征长度尺度之间的竞争,而对于自由旋转情况,由于相图中的稳定性较小,并且没有竞争,异常产生的异常产生。观察到尺度之间。

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  • 来源
    《Journal of Applied Physics》 |2020年第5期|054701.1-054701.12|共12页
  • 作者单位

    Centro das Ciencias Exatase das Tecnologias Campus Reitor Edgard Santos Universidade Federal do Oeste da Bahia Rua Bertioga 892 CEP 47810-059 Barreiras Bahia Brazil Instituto de Fisica Universidade Federal do Rio Grande do Sul Caixa Postal 15051 CEP 91501-970 Porto Alegre Rio Grande do Sul Brazil;

    Departamento de Fisica Instituto de Fisica e Matematica Universidade Federal de Pelotas Caixa Postal 354 96010-900 Pelotas Rio Grande do Sul Brazil;

    Instituto de Fisica Universidade Federal do Rio Grande do Sul Caixa Postal 15051 CEP 91501-970 Porto Alegre Rio Grande do Sul Brazil;

    Instituto de Fisica Universidade Federal do Rio Grande do Sul Caixa Postal 15051 CEP 91501-970 Porto Alegre Rio Grande do Sul Brazil;

    Departamento de Fisica Instituto de Fisica e Matematica Universidade Federal de Pelotas Caixa Postal 354 96010-900 Pelotas Rio Grande do Sul Brazil;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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