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Graphene-copper composite with micro-layered grains and ultrahigh strength. | LitMetric

AI Article Synopsis

  • Graphene has exceptional strength and thermal properties, making it a promising reinforcement material for various composites.
  • The study demonstrates that a copper matrix composite reinforced with reduced graphene oxide (RGO) can achieve a tensile strength of 608 MPa when a micro-layered structure is utilized, significantly improving strength compared to traditional copper.
  • The RGO-Cu composites exhibit excellent mechanical properties and electrical conductivity, suggesting an effective method for creating high-performance graphene-based materials.

Article Abstract

Graphene with ultrahigh intrinsic strength and excellent thermal physical properties has the potential to be used as the reinforcement of many kinds of composites. Here, we show that very high tensile strength can be obtained in the copper matrix composite reinforced by reduced graphene oxide (RGO) when micro-layered structure is achieved. RGO-Cu powder with micro-layered structure is fabricated from the reduction of the micro-layered graphene oxide (GO) and Cu(OH) composite sheets, and RGO-Cu composites are sintered by spark plasma sintering process. The tensile strength of the 5 vol.% RGO-Cu composite is as high as 608 MPa, which is more than three times higher than that of the Cu matrix. The apparent strengthening efficiency of RGO in the 2.5 vol.% RGO-Cu composite is as high as 110, even higher than that of carbon nanotube, multilayer graphene, carbon nano fiber and RGO in the copper matrix composites produced by conventional MLM method. The excellent tensile and compressive strengths, high hardness and good electrical conductivity are obtained simultaneously in the RGO-Cu composites. The results shown in the present study provide an effective method to design graphene based composites with layered structure and high performance.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5294407PMC
http://dx.doi.org/10.1038/srep41896DOI Listing

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