EventsThe 2nd International Online Conference on Nanomaterials
Published
This submission belongs to the session A. Synthesis and Characterization of Nanomaterials of the event The 2nd International Online Conference on Nanomaterials
Published date
12 Nov, 2020
Citation
Isaque Moura, Talita Gama Sousa, Andreza Menezes Lima, Wesley Oliveira Silva, Luiz Paulo Brandão, Synthesis and Characterization of graphene-oxide reinforced copper matrix composite, in Proceedings of The 2nd International Online Conference on Nanomaterials, 15 November–30 November 2020, MDPI: Basel, Switzerland, doi: 10.3390/IOCN2020-08000
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Synthesis and Characterization of graphene-oxide reinforced copper matrix composite

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1. Instituto Militar de Engenharia, Seção de Ciência dos Materiais SE/8, Rio de Janeiro Instituto Militar de Engenharia, Brazil, Brazil
2. Instituto Militar de Engenharia, Seção de Ciência dos Materiais SE/8, Rio de Janeiro Instituto Militar de Engenharia, Brazil
Abstract

In this study, eletrolitical copper powder (Cu) was initially mixed with the aqueous solution of graphene oxide (GO) and later the mixture underwent mechanical stirring for 1 hour, vacuum filtration and drying for 42 hours. The final concentration of GO in the composite was 0.3%wt. Through scanning electron microscopy (SEM) it was possible to observe the homogeneous dispersion of graphene sheets between copper particles, without the presence of agglomerates. In addition, the X-ray diffraction (XRD) of the pure samples and after mixing, revealed that there was no oxidation of the copper and absence of peaks related to other elements, confirming the high purity of the copper used. Still by XRD it was possible to analyze that the graphene oxide used was formed by stacking layers of graphene due to the appearance of a diffraction peak referring to the plane (002), which was confirmed by Raman Spectroscopy performed in GO from the appearance of the 2D bands. Fourier transform infrared spectroscopy (FTIR) allowed the identification of the vibrational spectra referring to the hydroxyl, carbonyl and epoxy functional groups in GO, confirming that the oxidation process was effective in inserting functional groups in the basal graphical plane. Through the GO thermogravimetric analysis (TGA) it was possible to identify a significant loss of mass of approximately 30% at temperatures below 100 ºC, referring to the elimination of water molecules, the most stable functional groups were eliminated at temperatures between 600 ºC and 800 ºC.

Keywords
Graphene oxide
copper
FTIR
TGA
SEM.
Manuscript
Poster
IOCN_pdf.pdf
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