Nanoscale Imaging of Oxidized Copper Foil Covered with CVD-Grown Graphene Layers

25 Pages Posted: 3 Nov 2021

See all articles by Kai Zhang

Kai Zhang

Hebei University of Technology

Chunguang Ban

Hebei University of Technology

Ye Yuan

Hebei University of Technology - Tianjin Key Laboratory of Materials Laminating Fabrication and Interface Control Technology

Li Huang

Hebei University of Technology

Yang Gan

Harbin Institute of Technology

Abstract

Orientation-dependent oxidation of Cu substrates covered by CVD-grown graphene under ambient conditions has been intensively studied. However, the effect of orientation of graphene layers has been largely overlooked. Here, we reported experimental results on natural oxidation of the polycrystalline Cu substrate coated by partial-coverage CVD-grown graphene stored in dryer under ambient conditions for up to 10 months. SEM, together with AFM, Raman and XPS, was used for systematically studying the morphological and compositional changes at nanoscale during oxidation. Oxidation of the polycrystalline Cu substrate depends sensitively on both orientation of graphene layers and Cu substrates as revealed by the distinctly different morophologies between oxidized and unoxidized regions in SEM images. The time dependence of oxidation for Cu was established. The findings reported here will have important implications for developing protection coatings for Cu.

Keywords: graphene, CVD-grown graphene domains, polycrystalline Cu substrate, oxidation, scanning electron microscopy

Suggested Citation

Zhang, Kai and Ban, Chunguang and Yuan, Ye and Huang, Li and Gan, Yang, Nanoscale Imaging of Oxidized Copper Foil Covered with CVD-Grown Graphene Layers. Available at SSRN: https://ssrn.com/abstract=3955675 or http://dx.doi.org/10.2139/ssrn.3955675

Kai Zhang

Hebei University of Technology ( email )

Tianjin
China

Chunguang Ban

Hebei University of Technology ( email )

Tianjin
China

Ye Yuan

Hebei University of Technology - Tianjin Key Laboratory of Materials Laminating Fabrication and Interface Control Technology ( email )

China

Li Huang (Contact Author)

Hebei University of Technology ( email )

Tianjin
China

Yang Gan

Harbin Institute of Technology ( email )

92 West Dazhi Street
Nan Gang District
Harbin, 150001
China

Do you have a job opening that you would like to promote on SSRN?

Paper statistics

Downloads
39
Abstract Views
220
PlumX Metrics