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Mechanical Robustness of Graphene on Flexible Transparent Substrates

Moon H. Kang, Lizbeth O. Prieto López

2012engrapheneflexiblemechanicaladhesionsubstrates

Abstract

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This study reports on a facile and widely applicable method of transferring chemical vapor deposited (CVD) graphene uniformly onto optically transparent and mechanically flexible substrates using commercially available, low-cost ultraviolet adhesive (UVA) and hot-press lamination (HPL). We report on the adhesion potential between the graphene and the substrate, and we compare these findings with those of the more commonly used cast polymer handler transfer processes. Graphene transferred with the two proposed methods showed lower surface energy and displayed a higher degree of adhesion (UVA: 4.40 ± 1.09 N/m, HPL: 0.60 ± 0.26 N/m) compared to equivalent CVD-graphene transferred using conventional poly(methyl methacrylate) (PMMA: 0.44± 0.06 N/m). The mechanical robustness of the transferred graphene was investigated by measuring the differential resistance as a function of bend angle and repeated bend−relax cycles across a range of bend radii. At a bend angle of 100° and a 2.5 mm bend radius, for both transfer techniques, the normalized resistance of graphene transferred on polyethylene terephthalate (PET) was around 80 times less than that of indium−tin oxide on PET. After 10^4 bend cycles, the resistance of the transferred graphene on PET using UVA and HPL was found to be, on average, around 25.5 and 8.1% higher than that of PMMA-transferred graphene, indicating that UVA- and HPL-transferred graphene are more strongly adhered compared to PMMA-transferred graphene. The robustness, in terms of maintained electrical performance upon mechanical fatigue, of the transferred graphene was around 60 times improved over ITO/PET upon many thousands of repeated bending stress cycles.

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Cite This Work

@article{55ae4d62-42cd-44c7-a49b-d11f34fa732e,
  title={Mechanical Robustness of Graphene on Flexible Transparent Substrates},
  author={Moon H. Kang and Lizbeth O. Prieto López},
  year={2012},
  language={en}
}
TY  - JOUR
TI  - Mechanical Robustness of Graphene on Flexible Transparent Substrates
AU  - Moon H. Kang
AU  - Lizbeth O. Prieto López
PY  - 2012
LA  - en
ER  -

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