Crossref journal-article
Wiley
Advanced Functional Materials (311)
Abstract

A unique strategy is reported to constrain the nucleation centers for multilayer graphene (MLG) and, later, single‐crystal graphene domains by gettering carbon source on backside of the flat Cu foil, during chemical vapor deposition. Hitherto, for a flat Cu foil, the top‐surface‐based growth mechanism is emphasized, while overlooking the graphene on the backside. However, the systematic experimental findings indicate a strong correlation between the backside graphene and the nucleation centers on the top‐surface, governed by the carbon diffusion through the bulk Cu. This understanding steers to devise a strategy to mitigate the carbon diffusion to the top‐surface by using a carbon “getter” substrate, such as nickel, on the backside of the Cu foil. Depth profiling of the nickel substrate, along with the density functional theory calculations, verifies the gettering role of the nickel support. The implementation of the backside carbon gettering approach on single‐crystal graphene growth results in lowering the nucleation density by two orders of magnitude. This enables the single‐crystal domains to grow by 6 mm laterally on the untreated Cu foil. Finally, the growth of large‐area polycrystalline single layer graphene, free of unwanted MLG domains, with significantly improved field‐effect mobility of ≈6800 cm2 V−1 s−1 is demonstrated.

Bibliography

Abidi, I. H., Liu, Y., Pan, J., Tyagi, A., Zhuang, M., Zhang, Q., Cagang, A. A., Weng, L., Sheng, P., Goddard, W. A., & Luo, Z. (2017). Regulating Top‐Surface Multilayer/Single‐Crystal Graphene Growth by “Gettering” Carbon Diffusion at Backside of the Copper Foil. Advanced Functional Materials, 27(23). Portico.

Dates
Type When
Created 8 years, 4 months ago (April 11, 2017, 8:04 a.m.)
Deposited 1 year, 11 months ago (Sept. 16, 2023, 4:33 p.m.)
Indexed 6 days, 3 hours ago (Aug. 29, 2025, 6:48 a.m.)
Issued 8 years, 4 months ago (April 11, 2017)
Published 8 years, 4 months ago (April 11, 2017)
Published Online 8 years, 4 months ago (April 11, 2017)
Published Print 8 years, 3 months ago (June 1, 2017)
Funders 6
  1. Innovation and Technology Commission 10.13039/501100003452

    Region: Asia

    gov (National government)

    Labels1
    1. ITC
    Awards1
    1. ITC‐CNERC14SC01
  2. Higher Education Commission, Pakistan 10.13039/501100004681

    Region: Asia

    gov (Local government)

    Labels3
    1. ہائیر ایجوکیشن کمیشن ، پاکستان
    2. Higher Education Commission
    3. HEC
  3. National Science Foundation 10.13039/100000001

    Region: Americas

    gov (National government)

    Labels4
    1. U.S. National Science Foundation
    2. NSF
    3. US NSF
    4. USA NSF
    Awards1
    1. DMREF‐1436985
  4. U.S. Department of Energy 10.13039/100000015

    Region: Americas

    gov (National government)

    Labels8
    1. Energy Department
    2. Department of Energy
    3. United States Department of Energy
    4. ENERGY.GOV
    5. US Department of Energy
    6. USDOE
    7. DOE
    8. USADOE
    Awards1
    1. DE‐SC0014607
  5. U.S. Department of Energy 10.13039/100000015

    Region: Americas

    gov (National government)

    Labels8
    1. Energy Department
    2. Department of Energy
    3. United States Department of Energy
    4. ENERGY.GOV
    5. US Department of Energy
    6. USDOE
    7. DOE
    8. USADOE
    Awards1
    1. DE‐AC02‐05CH11231
  6. National Science Foundation 10.13039/100000001

    Region: Americas

    gov (National government)

    Labels4
    1. U.S. National Science Foundation
    2. NSF
    3. US NSF
    4. USA NSF
    Awards1
    1. ACI‐1053575

@article{Abidi_2017, title={Regulating Top‐Surface Multilayer/Single‐Crystal Graphene Growth by “Gettering” Carbon Diffusion at Backside of the Copper Foil}, volume={27}, ISSN={1616-3028}, url={http://dx.doi.org/10.1002/adfm.201700121}, DOI={10.1002/adfm.201700121}, number={23}, journal={Advanced Functional Materials}, publisher={Wiley}, author={Abidi, Irfan H. and Liu, Yuanyue and Pan, Jie and Tyagi, Abhishek and Zhuang, Minghao and Zhang, Qicheng and Cagang, Aldrine A. and Weng, Lu‐Tao and Sheng, Ping and Goddard, William A. and Luo, Zhengtang}, year={2017}, month=apr }