Journal of Materials Chemistry C · 2014 · 33 citations · 37 references
EngineeringOrganic ElectronicsOptoelectronic DevicesSurface CoverageGraphene NanomeshesChemical EngineeringElectronic DevicesCarbon-based MaterialGraphene-based Nano-antennasIto ElectrodeMaterials ScienceOptoelectronic MaterialsOrganic SemiconductorGraphene OxideOrganic MaterialsIto InterfaceElectronic MaterialsSurface ScienceGraphene FiberGrapheneGraphene NanoribbonThin Films
We herein report an investigation of graphene oxide (GO) thin layers fabricated by simple horizontal-dip (H-dip) coating on an indium-tin-oxide (ITO) anode as used in solution-processable organic semiconducting devices. Homogeneous and smooth GO thin films were successfully deposited via an aqueous dispersion of GO on an ITO electrode, with a high surface coverage and low surface roughness, and a thickness controlled by H-dip coating. The use of an H-dip-coated GO film as a hole-injecting interfacial layer (IFL) in organic light-emitting diodes (OLEDs) resulted in a remarkable improvement in device performance (17 cd A−1), better than that (12 cd A−1) of a reference OLED with a spin-coated GO IFL. Stacked bi-IFLs of GO/poly(ethylenedioxythiophene):poly(styrene sulfonate) (GO/PEDOT:PSS) fabricated by H-dip coating were also investigated as hole-injecting IFLs in OLEDs, and these showed an even better device performance (23 cd A−1). Furthermore, it was also shown that polymer solar cells with H-dip-coated GO/PEDOT:PSS hole-collecting bi-IFLs exhibited a remarkable improvement in power conversion efficiency (6.9%), which was also higher than that (4.8%) obtained with spin-coated bi-IFLs. These results clearly indicate that the H-dip-coating of GO(/PEDOT:PSS) can effectively modify the ITO interface to yield efficient hole-selective IFLs, representing considerable promise for use as an alternative to spin-coated IFLs in the mass production of solution-processable organic semiconducting devices.
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Preparation of Graphitic Oxide
William S. Hummers, Richard E. Offeman · Journal of the American Chemical Society · 1958 · 29.5K citations
Light-emitting diodes based on conjugated polymers
J. H. Burroughes, Donal D. C. Bradley, Adam R. Brown et al. · Nature · 1990 · 11.3K citations
Gang Yu, Jun Gao, Jan C. Hummelen et al. · Science · 1995 · 10.2K citations · Full text
Engineering, Organic Solar Cell, η C +22