High uniformity and stability of graphene transparent conducting electrodes by dual-side doping
- Authors
- Im, Min Ji; Hyeong, Seok-Ki; Lee, Jae-Hyun; Kim, Tae-Wook; Lee, Seoung-Ki; Jung, Gun Young; Bae, 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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