High-yield production of graphene by liquid-phase exfoliation of graphite

2008 Nature Nanotechnology 6,075 citations

Abstract

Fully exploiting the properties of graphene will require a method for the mass production of this remarkable material. Two main routes are possible: large-scale growth or large-scale exfoliation. Here, we demonstrate graphene dispersions with concentrations up to approximately 0.01 mg ml(-1), produced by dispersion and exfoliation of graphite in organic solvents such as N-methyl-pyrrolidone. This is possible because the energy required to exfoliate graphene is balanced by the solvent-graphene interaction for solvents whose surface energies match that of graphene. We confirm the presence of individual graphene sheets by Raman spectroscopy, transmission electron microscopy and electron diffraction. Our method results in a monolayer yield of approximately 1 wt%, which could potentially be improved to 7-12 wt% with further processing. The absence of defects or oxides is confirmed by X-ray photoelectron, infrared and Raman spectroscopies. We are able to produce semi-transparent conducting films and conducting composites. Solution processing of graphene opens up a range of potential large-area applications, from device and sensor fabrication to liquid-phase chemistry.

Keywords

GrapheneExfoliation jointGraphiteMaterials scienceRaman spectroscopyNanotechnologyGraphene oxide paperGraphene nanoribbonsCarbon nanotubeChemical engineeringX-ray photoelectron spectroscopyAbsorption (acoustics)Composite materialOptics

MeSH Terms

GraphitePhase TransitionPyrrolidinonesSpectrum Analysis

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Publication Info

Year
2008
Type
article
Volume
3
Issue
9
Pages
563-568
Citations
6075
Access
Closed

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6075
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90
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5665
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Cite This

Yenny Hernández, Valeria Nicolosi, Mustafa Lotya et al. (2008). High-yield production of graphene by liquid-phase exfoliation of graphite. Nature Nanotechnology , 3 (9) , 563-568. https://doi.org/10.1038/nnano.2008.215

Identifiers

DOI
10.1038/nnano.2008.215
PMID
18772919
arXiv
0805.2850

Data Quality

Data completeness: 88%