Single-Layer Graphene Synthesis on a Al<sub>2</sub>O<sub>3</sub>(0001)/Cu(111) Template Using Chemical Vapor Deposition — Ken Verguts (2016) | RDL Network
Single-Layer Graphene Synthesis on a Al<sub>2</sub>O<sub>3</sub>(0001)/Cu(111) Template Using Chemical Vapor Deposition
ECS Journal of Solid State Science and Technology 5(11): Q3060-Q3066
Article 2016 English
Authors
KV
Ken Verguts
NV
Nandi Vrancken
BV
Bart Vermeulen
Abstract
1 min read
The parameter space of graphene growth using chemical vapor deposition on an untwinned single-crystalline Al2O3(0001)/Cu(111) template is discussed. The influence of growth temperature, methane flow and carbon dose is examined to assess graphene quality and multilayer coverage. An optimized growth window is identified yielding single-layer graphene. Production temperatures above 850°C result in a graphene quality improvement, but also an increase in multilayer coverage. Adapting graphene dosages by minimizing the growth time is the key element to reduce the amount of multilayer domains without affecting the quality. After graphene transfer, the multilayer graphene areas show a large increase in I2D/IG peak ratio, which indicates a turbostratic stacking order of graphene multilayer domains. Two growth models are put forward, i.e. a carbon penetration mechanism and an adsorption-diffusion mechanism.
Zewdu M. Gebeyehu, Vaidotas Mišeikis, Stiven Forti, Antonio Rossi, Neeraj Mishra, Alex Boschi, Yurii P. Ivanov, Leonardo Martini, Michał W. Ochapski, Giulia Piccinini, Kenji Watanabe, Takashi Taniguchi, Giorgio Divitini, Fabio Beltram, Sergio Pezzini, Camilla Coletti
Yong-Seung Kim, Jae Hong Lee, Young Duck Kim, Sahng-Kyoon Jerng, Kisu Joo, Eunho Kim, Jongwan Jung, Euijoon Yoon, Yun Daniel Park, Sunae Seo, Seung-Hyun Chun, Yong-Seung Kim, Jae Hong Lee, Young Duck Kim, Sahng-Kyoon Jerng, Kisu Joo, Eunho Kim, Jongwan Jung, Euijoon Yoon, Yun Daniel Park, Sunae Seo, Seung-Hyun Chun
Discussion(0)
No comments yet. Be the first to comment.