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Polyimide composite movies strengthened by graphene quantum dots: Fullerenes, Nanotubes and Carbon Nanostructures: Vol 0, No 0

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Summary

Polyimide composite movies have been extensively utilized in some superior discipline of microelectronic units, precision devices and nationwide protection purposes. Graphene quantum dots have nice utility potential in polymer doping modification due to their good mechanical power, excessive particular floor space and wonderful tunability of bodily and chemical properties. On this paper, Graphene quantum dots are ready by pyrolysis at completely different temperatures. The outcomes present that completely different response temperatures have an incredible affect on the dimensions and dimension distribution of graphene quantum dots. When the pyrolysis temperature is 200 °C, the dimensions of graphene quantum dots is uniform at 3–5 nm. Graphene quantum dots-polyimide nanocomposite movies ready by in-situ polymerization present wonderful mechanical properties. When the doping quantity of graphene quantum dots is 0.5 wt%, the tensile power and elastic modulus of the composite movies can attain 130.24 MPa and a couple of.93 GPa respectively, that are 41.3% and 108% increased than that of pure polyimide movies, respectively. Furthermore, the thermal stability of polyimide composite movies will increase with the rise of the doping quantity of graphene quantum dots. This exhibits that graphene quantum dots have good dispersion in polyimide matrix and may successfully enhance the interface of composites. These outcomes present a profitable preparation methodology to assist information to manufacture graphene quantum dots-polyimide composite movies with excessive efficiency for the superior purposes.

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