Evolution of Copper Step Beams During Graphene Growth by Cvd Method

20 Pages Posted: 16 Sep 2022

See all articles by Xue Zhang

Xue Zhang

Shandong University

Xing Guo

Shandong University

Peng Wang

Shandong University

Li Sun

Shandong University

Linyu Bai

Shandong University

Yanlu Li

Shandong University

Fapeng Yu

Shandong University

Xian Zhao

Shandong University

Abstract

Cu step beams (CSBs) are common products obtained when growing graphene by chemical vapor deposition (CVD); however, the growth behavior of CSBs is not fully understood. This study investigated the main factors influencing the CSBs caused by thermal stress between graphene and Cu foil prepared by CVD. Results showed that the copper crystal orientation, number of graphene layers, and surface undulation of the Cu foil influence the morphology of CSBs. It was found that Cu foils with high-index surfaces are more prone to form distinct CSBs, and the orientation of CSBs is closely related to the Cu crystal orientation. Bilayer graphene and trilayer graphene were found to cause deeper and wider CSBs than single-layer graphene. The thermal stress between graphene and Cu foil was studied through Raman spectral analysis. It was confirmed that CSBs are products resulting from the thermal stress released between grown graphene and Cu foil. This study offers new insights for high-quality graphene growth.

Keywords: graphene growth, CVD, Cu step beams, thermal stress

Suggested Citation

Zhang, Xue and Guo, Xing and Wang, Peng and Sun, Li and Bai, Linyu and Li, Yanlu and Yu, Fapeng and Zhao, Xian, Evolution of Copper Step Beams During Graphene Growth by Cvd Method. Available at SSRN: https://ssrn.com/abstract=4220932 or http://dx.doi.org/10.2139/ssrn.4220932

Xue Zhang

Shandong University ( email )

27 Shanda Nanlu
South Rd.
Jinan, SD 250100
China

Xing Guo

Shandong University ( email )

27 Shanda Nanlu
South Rd.
Jinan, SD 250100
China

Peng Wang

Shandong University ( email )

27 Shanda Nanlu
South Rd.
Jinan, SD 250100
China

Li Sun

Shandong University ( email )

27 Shanda Nanlu
South Rd.
Jinan, SD 250100
China

Linyu Bai

Shandong University ( email )

Yanlu Li

Shandong University ( email )

27 Shanda Nanlu
South Rd.
Jinan, SD 250100
China

Fapeng Yu (Contact Author)

Shandong University ( email )

27 Shanda Nanlu
South Rd.
Jinan, SD 250100
China

Xian Zhao

Shandong University ( email )

27 Shanda Nanlu
South Rd.
Jinan, SD 250100
China

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