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基于接枝在蒙脱土上的聚(ε-己内酯)的纳米复合材料的分子动力学模拟

Molecular dynamics simulations of nanocomposites based on poly(epsilon-caprolactone) grafted on montmorillonite clay.

作者信息

Gardebien Fabrice, Brédas Jean-Luc, Lazzaroni Roberto

机构信息

Service de Chimie des Matériaux Nouveaux, Université de Mons-Hainaut, 20 Place du Parc, B-7000 Mons, Belgium.

出版信息

J Phys Chem B. 2005 Jun 30;109(25):12287-96. doi: 10.1021/jp045122i.

Abstract

Intercalated and exfoliated models of polymer nanocomposites based on poly(epsilon-caprolactone) and functionalized montmorillonite clay are studied by means of molecular dynamics simulations. Intercalated and exfoliated models are considered for probing the structural characteristics of the corresponding nanocomposites prepared by melt intercalation and in situ polymerization, respectively. In the exfoliated system, the organization of the polymer chains onto the clay surface is examined in terms of the density profiles and the order parameter function. A layered structure can clearly be seen to form near the surface with density maxima higher than in amorphous poly(epsilon-caprolactone). This can be viewed as an increase in effective particle thickness, which can contribute to the outstanding gas barrier properties of the exfoliated nanocomposites. The comparison of the structures and energetics of the intercalated model with those of a nanocomposite model based on a nonfunctionalized clay indicates nearly similar characteristics. Nevertheless, the slight differences observed for the interfacial polymer density and clay- and surfactant-polymer binding energies can account for the differences in rheological measurements. The results also suggest that the difference in morphology obtained for the nanocomposites prepared by the two synthetic approaches can be ascribed to both a difference in interfacial polymer density and the formation of bridging polymer chain structures that hinder the exfoliation process.

摘要

通过分子动力学模拟研究了基于聚(ε-己内酯)和功能化蒙脱土的聚合物纳米复合材料的插层和剥离模型。分别考虑插层模型和剥离模型,以探究通过熔融插层和原位聚合制备的相应纳米复合材料的结构特征。在剥离体系中,根据密度分布和序参函数研究了聚合物链在粘土表面的排列情况。可以清楚地看到,在表面附近形成了分层结构,其密度最大值高于非晶态聚(ε-己内酯)中的密度最大值。这可以被视为有效颗粒厚度的增加,这有助于剥离型纳米复合材料具有出色的气体阻隔性能。将插层模型的结构和能量与基于非功能化粘土的纳米复合材料模型的结构和能量进行比较,结果表明它们具有几乎相似的特征。然而,在界面聚合物密度以及粘土与表面活性剂 - 聚合物结合能方面观察到的细微差异,可以解释流变学测量中的差异。结果还表明,通过两种合成方法制备的纳米复合材料在形态上的差异,既可以归因于界面聚合物密度的差异,也可以归因于阻碍剥离过程的桥接聚合物链结构的形成。

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