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单个纳米棒在非缠结聚合物熔体中的平动和转动扩散。

Translational and rotational diffusion of a single nanorod in unentangled polymer melts.

作者信息

Kim Min Jung, Cho Hyun Woo, Kim Jeongmin, Kim Heesuk, Sung Bong June

机构信息

Department of Chemistry and Research Institute for Basic Science, Sogang University, Seoul 121-742, Republic of Korea.

Photo-electronic Hybrids Research Center, Korea Institute of Science and Technology (KIST), Seoul 136-791, South Korea.

出版信息

Phys Rev E Stat Nonlin Soft Matter Phys. 2015 Oct;92(4):042601. doi: 10.1103/PhysRevE.92.042601. Epub 2015 Oct 7.

Abstract

Polymer nanocomposites have been an issue of both academic and industrial interest due to promising electrical, mechanical, optical, and magnetic properties. The dynamics of nanoparticles in polymer nanocomposites is a key to understanding those properties of polymer nanocomposites and is important for applications such as self-healing nanocomposites. In this article we investigate the translational and the rotational dynamics of a single nanorod in unentangled polymer melts by employing extensive molecular dynamics simulations. A nanorod and polymers are modeled as semiflexible tangent chains of spherical beads. The stiffness of a nanorod is tuned by changing the bending potential between chemical bonds. When polymers are sufficiently long and the nanorod is stiff, the nanorod translates in an anisotropic fashion along the nanorod axis within time scales of translational relaxation times even in unentangled polymer melts. The rotational diffusion is suppressed more significantly than the translational diffusion as the polymer chain length is increased, thus the translational and rotational diffusion of the nanorod are decoupled. We also estimate the winding numbers of polymers, i.e., how many times a polymer winds the nanorod. The winding number increases with longer polymers but is relatively insensitive to the nanorod stiffness.

摘要

聚合物纳米复合材料因其具有良好的电学、力学、光学和磁学性能而成为学术界和工业界关注的焦点。聚合物纳米复合材料中纳米粒子的动力学是理解聚合物纳米复合材料这些性能的关键,对于自愈纳米复合材料等应用也很重要。在本文中,我们通过广泛的分子动力学模拟研究了单个纳米棒在非缠结聚合物熔体中的平动和转动动力学。纳米棒和聚合物被建模为球形珠子的半柔性切线链。通过改变化学键之间的弯曲势来调节纳米棒的刚度。当聚合物足够长且纳米棒刚性较大时,即使在非缠结聚合物熔体中,纳米棒在平动弛豫时间的时间尺度内也会沿纳米棒轴以各向异性的方式平动。随着聚合物链长度的增加,转动扩散比平动扩散受到更显著的抑制,因此纳米棒的平动和转动扩散是解耦的。我们还估计了聚合物的缠绕数,即聚合物缠绕纳米棒的次数。缠绕数随着聚合物长度的增加而增加,但对纳米棒的刚度相对不敏感。

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