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Polyimide-Based Nanocomposites with Binary CeO

机译:基于聚酰亚胺的纳米复合材料与二元CEO

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摘要

To design novel polymer materials with optimal properties relevant to industrial usage, it would seem logical to modify polymers with reportedly good functionality, such as polyimides (PIs). We have created a set of PI-based nanocomposites containing binary blends of CeO2 with carbon nanoparticles (nanocones/discs or nanofibres), to improve a number of functional characteristics of the PIs. The prime novelty of this study is in a search for a synergistic effect amidst the nanofiller moieties regarding the thermal and the mechanical properties of PIs. In this paper, we report on the structure, thermal, and mechanical characteristics of the PI-based nanocomposites with binary fillers. We have found that, with a certain composition, the functional performance of a material can be substantially improved. For example, a PI containing SO2-groups in its macrochains not only had its thermal stability enhanced (by ~20 °C, 10% weight loss up to 533 °C) but also had its stiffness increased by more than 10% (Young’s modulus as high as 2.9–3.0 GPa) in comparison with the matrix PI. In the case of a PI with no sulfonic groups, binary fillers increased stiffness of the polymer above its glass transition temperature, thereby widening its working temperature range. The mechanisms of these phenomena are discussed. Thus, this study could contribute to the design of new composite materials with controllable and improved functionality.
机译:为了设计具有与工业用途相关的最佳性质的新型聚合物材料,似乎对据报道的良好功能(如聚酰亚胺(PI)而言,似乎是逻辑的。我们创建了一组基于PI的纳米复合材料,含有CEO 2的二进制共混物,其中CEO 2与碳纳米粒子(纳米核碱/圆盘或纳米纤维),以改善PIS的多种功能特征。本研究的主要新颖性是在纳米填充部分的关于PIS的热量和机械性能的过程中寻找协同效应。在本文中,我们报告了具有二元填料的基于PI基纳米复合材料的结构,热和机械特性。我们发现,通过某种组成,可以显着提高材料的功能性能。例如,在其宏观中含有SO2组的PI不仅具有增强的热稳定性(〜20℃,高达533°C的10%损耗10%,而且其刚度增加超过10%(杨氏模量与矩阵PI相比,高达2.9-3.0GPa)。在没有磺基团的PI的情况下,二元填料增加了聚合物的刚度,从而扩大其工作温度范围。讨论了这些现象的机制。因此,该研究可以有助于设计新的复合材料,其功能可控和改善。

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