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  • Highly Efficient and Bendab...
    Song, Myungkwan; You, Dae Sung; Lim, Kyounga; Park, Sujin; Jung, Sunghoon; Kim, Chang Su; Kim, Dong-Ho; Kim, Do-Geun; Kim, Jongk-Kuk; Park, Juyun; Kang, Yong-Cheol; Heo, Jinhee; Jin, Sung-Ho; Park, Jong Hyun; Kang, Jae-Wook

    Advanced functional materials, September 14, 2013, Letnik: 23, Številka: 34
    Journal Article

    Highly efficient and bendable organic solar cells (OSCs) are fabricated using solution‐processed silver nanowire (Ag NW) electrodes. The Ag NW films were highly transparent (diffusive transmittance ≈ 95% at a wavelength of 550 nm), highly conductive (sheet resistance ≈ 10 Ω sq−1), and highly flexible (change in resistance ≈ 1.1 ± 1% at a bending radius of ≈200 μm). Power conversion efficiencies of ≈5.80 and 5.02% were obtained for devices fabricated on Ag NWs/glass and Ag NWs/poly(ethylene terephthalate) (PET), respectively. Moreover, the bendable devices fabricated using the Ag NWs/PET films decrease slightly in their efficiency (to ≈96% of the initial value) even after the devices had been bent 1000 times with a radius of ≈1.5 mm. Highly bendable and efficient organic solar cells are developed using solution‐processed silver nanowires. The electrode and solar cell characterizations are also presented with the devices showing high performance and flexibility.