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Transfer of Large-Area Graphene Films for High-Performance Transparent Conductive Electrodes

Nano Letters · 2009 · Vol. 9(12) · pp. 4359–4363
Xuesong LiYanwu ZhuWeiwei CaiMark D. BorysiakBoyang HanDavid ChenRichard D. PinerLuigi ColomboRodney S. Ruoff

Abstract

Graphene, a two-dimensional monolayer of sp(2)-bonded carbon atoms, has been attracting great interest due to its unique transport properties. One of the promising applications of graphene is as a transparent conductive electrode owing to its high optical transmittance and conductivity. In this paper, we report on an improved transfer process of large-area graphene grown on Cu foils by chemical vapor deposition. The transferred graphene films have high electrical conductivity and high optical transmittance that make them suitable for transparent conductive electrode applications. The improved transfer processes will also be of great value for the fabrication of electronic devices such as field effect transistor and bilayer pseudospin field effect transistor devices.

Graphene research and applicationsGraphene and Nanomaterials ApplicationsMolecular Junctions and NanostructuresGrapheneMaterials scienceTransmittanceElectrodeOptoelectronicsBilayer grapheneChemical vapor depositionNanotechnologyFabricationElectrical conductor

MeSH terms

CrystallizationElectric ConductivityElectrodesEquipment DesignGraphiteMaterials TestingMembranes, ArtificialMolecular ConformationParticle SizeSurface PropertiesEquipment Failure AnalysisNanotechnologyNanostructures
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References
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Nature Materials · 2007 · 39,026 citations
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Nano Letters · 2008 · 1,523 citations
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Science · 2009 · 13,751 citations
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