Abstract
The ability to explore electronic structure and their role in determining material's macroscopic behaviour is essential to explain and engineer functions of material and device. Since its debut in 2004, graphene has attracted global research interest due to its unique properties. Chemical vapor deposition (CVD) has emerged as an important method for the massive preparation and production of graphene for various applications. Here by employing angle-resolved photoemission spectroscopy with nanoscale spatial resolution ∼ 100 nm (Nano-ARPES), we describe the approach to measure the electronic structure of polycrystalline graphene on copper foils, demonstrating the power of Nano-ARPES to detect the electronic structure of microscopic single crystalline domains, being fully compatible with conventional ARPES. Similar analysis could be employed to other microscopic materials.
Cite
CITATION STYLE
Chen, C., Avila, J., & Asensio, M. C. (2017). Electronic structure of polycrystalline CVD-graphene revealed by Nano-ARPES. In Journal of Physics: Conference Series (Vol. 849). Institute of Physics Publishing. https://doi.org/10.1088/1742-6596/849/1/012019
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