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碳纳米管环氧树脂纳米复合材料:界面改性对纳米复合材料动态力学性能的影响。

Carbon nanotube epoxy nanocomposites: the effects of interfacial modifications on the dynamic mechanical properties of the nanocomposites.

机构信息

Ohio Aerospace Institute , 22800 Cedar Point Road, Cleveland, Ohio 44142, United States.

出版信息

ACS Appl Mater Interfaces. 2014 Oct 8;6(19):16621-30. doi: 10.1021/am5056849. Epub 2014 Sep 25.

Abstract

Surface functionalization of pretreated carbon nanotubes (CNT) using aromatic, aliphatic, and aliphatic ether diamines was performed. The pretreatment of the CNT consisted of either acid- or photo-oxidation. The acid treated CNT had a higher initial oxygen content compared to the photo-oxidized CNT and this resulted in a higher density of functionalization. X-ray photoelectron spectroscopy (XPS) and thermal gravimetric analysis (TGA) were used to verify the presence of the oxygenated and amine moieties on the CNT surfaces. Epoxy/0.1 wt % CNT nanocomposites were prepared using the functionalized CNT and the bulk properties of the nanocomposites were examined. Macroscale correlations between the interfacial modification and bulk dynamic mechanical and thermal properties were observed. The amine modified epoxy/CNT nanocomposites exhibited up to a 1.9-fold improvement in storage modulus (G') below the glass transition (Tg) and up to an almost 4-fold increase above the Tg. They also exhibited a 3-10 °C increase in the glass transition temperature. The aromatic diamine surface modified epoxy/CNT nanocomposites resulted in the largest increase in shear moduli below and above the Tg and the largest increase in the Tg. Surface examination of the nanocomposites with scanning electron microscopy (SEM) revealed indications of a greater adhesion of the epoxy resin matrix to the CNT, most likely due to the covalent bonding.

摘要

对预处理的碳纳米管 (CNT) 进行了芳族、脂肪族和脂肪族醚二胺的表面功能化处理。CNT 的预处理包括酸处理或光氧化。与光氧化的 CNT 相比,酸处理的 CNT 具有更高的初始氧含量,这导致了更高的功能化密度。X 射线光电子能谱 (XPS) 和热重分析 (TGA) 用于验证 CNT 表面存在含氧和胺部分。使用功能化的 CNT 制备了环氧/0.1wt%CNT 纳米复合材料,并检查了纳米复合材料的体性质。观察到界面改性与体动态力学和热性能之间的宏观相关性。胺改性的环氧/CNT 纳米复合材料在玻璃化转变 (Tg) 以下的储能模量 (G') 提高了 1.9 倍,在 Tg 以上提高了近 4 倍。它们还表现出玻璃化转变温度升高 3-10°C。芳族二胺表面改性的环氧/CNT 纳米复合材料在 Tg 以下和以上产生了剪切模量的最大增加,并且 Tg 的增加最大。用扫描电子显微镜 (SEM) 对纳米复合材料进行表面检查表明,环氧树脂基体与 CNT 的粘附性更强,这很可能是由于共价键合。

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