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聚合物纳米复合材料中纳米粒子的分散和聚集:分子动力学模拟的见解。

Nanoparticle dispersion and aggregation in polymer nanocomposites: insights from molecular dynamics simulation.

机构信息

Key Laboratory of Beijing City on Preparation and Processing of Novel Polymer Materials, Beijing University of Chemical Technology, Beijing 100029, People's Republic of China.

出版信息

Langmuir. 2011 Jun 21;27(12):7926-33. doi: 10.1021/la201073m. Epub 2011 May 19.

Abstract

It is a great challenge to fully understand the microscopic dispersion and aggregation of nanoparticles (NPs) in polymer nanocomposites (PNCs) through experimental techniques. Here, coarse-grained molecular dynamics is adopted to study the dispersion and aggregation mechanisms of spherical NPs in polymer melts. By tuning the polymer-filler interaction in a wide range at both low and high filler loadings, we qualitatively sketch the phase behavior of the PNCs and structural spatial organization of the fillers mediated by the polymers, which emphasize that a homogeneous filler dispersion exists just at the intermediate interfacial interaction, in contrast with traditional viewpoints. The conclusion is in good agreement with the theoretically predicted results from Schweizer et al. Besides, to mimick the experimental coarsening process of NPs in polymer matrixes (ACS Nano 2008, 2, 1305), by grafting polymer chains on the filler surface, we obtain a good filler dispersion with a large interparticle distance. Considering the PNC system without the presence of chemical bonding between the NPs and the grafted polymer chains, the resulting good dispersion state is further used to investigate the effects of the temperature, polymer-filler interaction, and filler size on the filler aggregation process. It is found that the coarsening or aggregation process of the NPs is sensitive to the temperature, and the aggregation extent reaches the minimum in the case of moderate polymer-filler interaction, because in this case a good dispersion is obtained. That is to say, once the filler achieves a good dispersion in a polymer matrix, the properties of the PNCs will be improved significantly, because the coarsening process of the NPs will be delayed and the aging of the PNCs will be slowed.

摘要

通过实验技术,完全理解聚合物纳米复合材料(PNC)中纳米颗粒(NPs)的微观分散和聚集是一个巨大的挑战。在这里,采用粗粒化分子动力学来研究球形 NPs 在聚合物熔体中的分散和聚集机制。通过在低和高填充负载下在很宽的范围内调整聚合物-填充剂相互作用,我们定性地描绘了 PNC 的相行为和聚合物介导的填充剂的结构空间组织,这强调了在中等界面相互作用下存在均匀的填充剂分散,与传统观点相反。该结论与 Schweizer 等人从理论上预测的结果非常吻合。此外,为了模拟 NPs 在聚合物基质中的实验粗化过程(ACS Nano 2008, 2, 1305),通过在填充剂表面接枝聚合物链,我们获得了具有大颗粒间距离的良好填充剂分散体。考虑到 PNC 系统中 NPs 与接枝聚合物链之间不存在化学键,所得的良好分散状态进一步用于研究温度、聚合物-填充剂相互作用和填充剂尺寸对填充剂聚集过程的影响。结果发现, NPs 的粗化或聚集过程对温度敏感,并且在中等聚合物-填充剂相互作用的情况下,聚集程度达到最小,因为在这种情况下获得了良好的分散。也就是说,一旦填充剂在聚合物基质中实现了良好的分散,PNC 的性能将得到显著改善,因为 NPs 的粗化过程将被延迟,PNC 的老化将被减缓。

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