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Graphene for tough and electroconductive alumina ceramics

机译:石墨烯,用于坚韧和导电的氧化铝陶瓷

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摘要

A simple, fast and upscalable method is described to produce graphene/alumina (G/Al_2O_3) composites by spark plasma sintering (SPS) with a significant improvement on both mechanical and electrical properties of monolithic Al_2O_3. Graphene oxide (GO) was mixed with Al_2O_3 using a colloidal method obtaining an excellent dispersion of GO in the alumina matrix. The material was consolidated by SPS that allowed, in one-step, the in situ reduction of the GO during the sintering process. A detailed Raman analysis was found to be very useful to study the orientation of the graphene in the composite and to evaluate and optimise its thermal reduction. Graphenc platelets acted as elastic bridges avoiding crack propagation and providing this material with a crack bridging reinforcement mechanism. A very low graphene loading (0.22 wt%) led to a 50% improvement on the mechanical properties of the alumina and to an increase of the electrical conductivity up to eight orders of magnitude.
机译:描述了一种简单,快速且可升级的方法,该方法通过火花等离子体烧结(SPS)来生产石墨烯/氧化铝(G / Al_2O_3)复合材料,显着改善了整体式Al_2O_3的机械和电气性能。使用胶体方法将氧化石墨烯(GO)与Al_2O_3混合,从而获得GO在氧化铝基质中的优异分散性。该材料通过SPS固结,从而一步一步在烧结过程中就地还原了GO。发现详细的拉曼分析对于研究石墨烯在复合材料中的取向以及评估和优化其热还原非常有用。 Graphenc血小板充当弹性桥,避免了裂纹扩展,并为这种材料提供了裂纹桥接增强机制。极低的石墨烯负载量(0.22 wt%)导致氧化铝的机械性能提高50%,并导致电导率提高到八个数量级。

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