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碳纳米管分散性对交联环氧树脂/碳纳米管纳米复合材料玻璃化转变的影响:界面相互作用的作用。

Effect of carbon nanotube dispersion on glass transition in cross-linked epoxy-carbon nanotube nanocomposites: role of interfacial interactions.

机构信息

Department of Chemical Engineering, Texas Tech University, Lubbock, Texas 79409-3121, USA.

出版信息

J Phys Chem B. 2013 Jun 20;117(24):7444-54. doi: 10.1021/jp401614p. Epub 2013 Jun 11.

Abstract

We have used atomistic molecular simulations to study the effect of nanofiller dispersion on the glass transition behavior of cross-linked epoxy-carbon nanotube (CNT) nanocomposites. Specific chemical interactions at the interface of CNTs and cross-linked epoxy create an interphase region, whose impact on the properties of their nanocomposites increases with an increasing extent of dispersion. To investigate this aspect, we have compared the volumetric, structural, and dynamical properties of three systems: neat cross-linked epoxy, cross-linked epoxy nanocomposite containing dispersed CNTs, and cross-linked epoxy nanocomposite containing aggregated CNTs. We find that the nanocomposite containing dispersed CNTs shows a depression in the glass transition temperature (Tg) by ~66 K as compared to the neat cross-linked epoxy, whereas such a large depression is absent in the nanocomposite containing aggregated CNTs. Our results suggest that the poor interfacial interactions between the CNTs and the cross-linked epoxy matrix lead to a more compressible interphase region between the CNTs and the bulk matrix. An analysis of the resulting dynamic heterogeneity shows that the probability of percolation of immobile domains becomes unity near the Tg calculated from volumetric properties. Our observations also lend support to the conceptual analogy between polymer nanocomposites and the nanoconfinement of polymer thin films.

摘要

我们使用原子分子模拟研究了纳米填料分散对交联环氧树脂-碳纳米管(CNT)纳米复合材料玻璃化转变行为的影响。CNT 和交联环氧树脂界面处的特定化学相互作用会形成一个界面相区域,随着分散程度的增加,其对纳米复合材料性能的影响也会增加。为了研究这一方面,我们比较了三个系统的体积、结构和动力学性质:纯交联环氧树脂、含有分散 CNT 的交联环氧树脂纳米复合材料和含有聚集 CNT 的交联环氧树脂纳米复合材料。我们发现,与纯交联环氧树脂相比,含有分散 CNT 的纳米复合材料的玻璃化转变温度(Tg)降低了约 66 K,而含有聚集 CNT 的纳米复合材料则没有出现这种大的降低。我们的结果表明,CNT 与交联环氧树脂基体之间较差的界面相互作用导致 CNT 与基体之间的界面相区域更具可压缩性。对所得动态非均质性的分析表明,在根据体积性质计算出的 Tg 附近,不可动域的渗流概率变为 1。我们的观察结果也支持聚合物纳米复合材料和聚合物薄膜纳米限域之间的概念类比。

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