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      Top illuminated inverted organic ultraviolet photosensors with single layer graphene electrodes

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      Applied Physics Letters
      AIP Publishing

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          Roll-to-roll production of 30-inch graphene films for transparent electrodes.

          The outstanding electrical, mechanical and chemical properties of graphene make it attractive for applications in flexible electronics. However, efforts to make transparent conducting films from graphene have been hampered by the lack of efficient methods for the synthesis, transfer and doping of graphene at the scale and quality required for applications. Here, we report the roll-to-roll production and wet-chemical doping of predominantly monolayer 30-inch graphene films grown by chemical vapour deposition onto flexible copper substrates. The films have sheet resistances as low as approximately 125 ohms square(-1) with 97.4% optical transmittance, and exhibit the half-integer quantum Hall effect, indicating their high quality. We further use layer-by-layer stacking to fabricate a doped four-layer film and measure its sheet resistance at values as low as approximately 30 ohms square(-1) at approximately 90% transparency, which is superior to commercial transparent electrodes such as indium tin oxides. Graphene electrodes were incorporated into a fully functional touch-screen panel device capable of withstanding high strain.
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            Recent Progress in Polymer Solar Cells: Manipulation of Polymer:Fullerene Morphology and the Formation of Efficient Inverted Polymer Solar Cells

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              Semiconductor ultraviolet detectors

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                Author and article information

                Journal
                Applied Physics Letters
                Appl. Phys. Lett.
                AIP Publishing
                0003-6951
                1077-3118
                July 16 2012
                July 16 2012
                : 101
                : 3
                : 033302
                Article
                10.1063/1.4733299
                9d66136d-080c-46ff-b522-b5c5a8488897
                © 2012
                History
                Product
                Self URI (article page): http://aip.scitation.org/doi/10.1063/1.4733299

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