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Effect of Side-Chain Structure of Rigid Polyimide Dispersant on Mechanical Properties of Single-Walled Carbon Nanotube/Cyanate Ester Composite

机译:刚性聚酰亚胺分散剂的侧链结构对单壁碳纳米管/氰酸酯复合材料力学性能的影响

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Three kinds of polymer, polyimide without sidechain (PI), polyimide-graft-glyceryl 4-nonylphenyl ether (PI-GNE), and polyimide-graft-bisphenol A diglyceryl acrylate (PI-BDA), have been synthesized and used to disperse single-walled carbon nanotubes (SWNTs) and to improve the interfacial bonding between SWNTs and cyanate ester (CE) matrix. Visual observation, UV-vis-near-IR (UV-vis-NIR) spectra, and atomic force microscopy (AFM) images show that both PI-GNE and PI-BDA are highly effective at dispersing and debundling SWNTs in DMF, whereas PI is less effective. Interaction between SWNTs and PI, PI-GNE or PI-BDA was confirmed by computer simulation and Raman spectra. A series of CE-based composite films reinforced with different loadings of SWNTs, SWNTs/PI, SWNTs/PI-GNE and SWNTs/PI-BDA were prepared by solution casting. It was found that, because of the unique side-chain structure of PI-BDA, SWNTs/PI-BDA disperse better in CE matrix than do SWNTs/PI-GNE, SWNTs/PI, and SWNTs. As a result, SWNTs/PI-BDA/CE composites have the greatest improvement in mechanical properties of the materials tested. These results imply that the choice of side-chain on a dispersant is very important to the dispersion of SWNTs in matrix and the filler/matrix interfacial adhesion, which are two key requirements for achieving effective reinforcement.
机译:合成了三种聚合物,没有侧链的聚酰亚胺(PI),聚酰亚胺-接枝-甘油4-壬基苯基醚(PI-GNE)和聚酰亚胺-接枝-双酚A丙烯酸二甘油酯(PI-BDA),并用于分散单壁碳纳米管(SWNT)并改善SWNT与氰酸酯(CE)基质之间的界面结合。目测,紫外可见-近红外(UV-vis-NIR)光谱和原子力显微镜(AFM)图像显示,PI-GNE和PI-BDA均能有效分散SWNT在DMF中的分布和去捆绑,而PI效果较差。通过计算机模拟和拉曼光谱证实了SWNT与PI,PI-GNE或PI-BDA之间的相互作用。通过溶液流延制备了一系列的基于CE的复合膜,这些复合膜用不同的SWNT,SWNT / PI,SWNT / PI-GNE和SWNT / PI-BDA加载。已经发现,由于PI-BDA的独特侧链结构,SWNT / PI-BDA在CE基质中的分散性优于SWNT / PI-GNE,SWNT / PI和SWNT。结果,SWNTs / PI-BDA / CE复合材料在测试材料的机械性能方面具有最大的改善。这些结果表明,选择分散剂上的侧链对于SWNT在基体中的分散以及填料/基体的界面粘合非常重要,这是实现有效增强的两个关键要求。

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