Nitrogen-doping graphene at ambient conditions with N2-DBD-plasma and the role of neutral species

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Abstract

We doped nitrogen into monolayer graphene using reactive nitrogen species from a dielectric barrier discharge (DBD). After 30 s of treatment, the graphene monolayer had a moderate degree of damage (ID/IG = 1.2) and an increase in the N-atom (pyrrolic) and O-atom (mixed) content. During long treatment times (20 min), the treated area increased radially and the graphene was destroyed. Overall, the N-atom content increased with increasing operating voltage of the DBD source. When the graphene was treated with only neutral reactive nitrogen species, the N-atom content and type remained unchanged. Therefore, we hypothesize that the primary reactive species resulting in pyrrolic N-doping from the DBD are neutrals such as N(4S) and possibly N(2P).

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Begley, A., Bartolomeo, G. L., Abbott, D. F., Mougel, V., & Zenobi, R. (2024). Nitrogen-doping graphene at ambient conditions with N2-DBD-plasma and the role of neutral species. Plasma Processes and Polymers, 21(4). https://doi.org/10.1002/ppap.202300168

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