Ultra-clean high-mobility graphene on technologically relevant substrates
Ayush Tyagi, Vaidotas Mi\v{s}eikis, Leonardo Martini, Stiven Forti,, Neeraj Mishra, Zewdu M. Gebeyehu, Marco A. Giambra, Jihene Zribi, Mathieu, Fr\'egnaux, Damien Aureau, Marco Romagnoli, Fabio Beltram, Camilla Coletti

TL;DR
This paper presents a rapid, scalable cleaning method for CVD-grown graphene on SiO2/Si substrates, achieving high mobility values comparable to encapsulated samples, thus enabling broader optoelectronic applications.
Contribution
The authors develop a simple cleaning process that significantly improves graphene mobility directly on common substrates without encapsulation, facilitating scalable device integration.
Findings
Achieved hole mobility up to 9000 cm^2 V^{-1} s^{-1}
Achieved electron mobility up to 8000 cm^2 V^{-1} s^{-1}
Mobility nearly doubles compared to acetone-cleaned graphene
Abstract
Graphene grown via chemical vapour deposition (CVD) on copper foil has emerged as a high-quality, scalable material, that can be easily integrated on technologically relevant platforms to develop promising applications in the fields of optoelectronics and photonics. Most of these applications require low-contaminated high-mobility graphene (i.e., approaching 10 000 ) at room temperature) to reduce device losses and implement compact device design. To date, these mobility values are only obtained when suspending or encapsulating graphene. Here, we demonstrate a rapid, facile, and scalable cleaning process, that yields high-mobility graphene directly on the most common technologically relevant substrate: silicon dioxide on silicon (SiO/Si). Atomic force microscopy (AFM) and spatially-resolved X-ray photoelectron spectroscopy (XPS) demonstrate that this approach is…
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Taxonomy
TopicsGraphene research and applications · Semiconductor materials and devices
