High uniformity and stability of graphene transparent conducting electrodes by dual-side doping

Authors
Im, Min JiHyeong, Seok-KiLee, Jae-HyunKim, Tae-WookLee, Seoung-KiJung, Gun YoungBae, Sukang
Issue Date
2022-12
Publisher
Elsevier BV
Citation
Applied Surface Science, v.605
Abstract
Chemical doping is an efficient method to tailor the electrical properties of graphene transparent conductive electrodes. In general, chemically doped graphene by single-side exhibits a drawback of high conductivity but inferior uniformity and stability after exposure to chemical solvent or annealing process. Here, we report a highly uniform and stable graphene transparent conducting electrodes doped by dual-side with macro-and small molecular organic dopants such as Nafion on the top and benzimidazole (BI) at the bottom. The electrical properties, optical properties, and stability were compared depending on the top-side dopants. Dual-side doping showed a higher work function (> 5 eV), and a uniform low sheet resistance (less than 200 omega sq??? 1) compared to the single-side doping. The Dual-N exhibited a relatively higher figure of merit (FoM, sigma DC/sigma op -62.38), a smoother surface (Rrms -0.54 nm), and a superior thermal/chemical stability than the Dual-A, showing the potential possibility as alternative electrodes for next-generation flexible electronic devices. <comment>Superscript/Subscript Available</comment
Keywords
WAFER-SCALE; MONOLAYER GRAPHENE; LAYER GRAPHENE; WORK-FUNCTION; DEGRADATION; DEPOSITION; EFFICIENCY; GROWTH; FILMS; Dual-side doping; p-doping; Nafion; Figure of Merit; Sheet resistance; Thermal stability; Chemical stability
ISSN
0169-4332
URI
https://pubs.kist.re.kr/handle/201004/114259
DOI
10.1016/j.apsusc.2022.154569
Appears in Collections:
KIST Article > 2022
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