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All-solution-processed-inverted polymer solar cells on PET substrates with CuOx thin film as an anode interlayer

机译:以CuOx薄膜为阳极夹层的PET基板上的全溶液转化的聚合物太阳能电池

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Low-cost solution process becomes the strategic principle for the fabrication of polymer solar cell. However, the cathode or anode interlayer are usually deposited by using vacuum evaporation due to the hydrophobicity problem and the temperature restriction of PET substrates. Here, we have successfully fabricated copper oxide (CuOx) thin film as an anode interlayer in the inverted P3HT:PC61BM solar cells on the PET substrates at low temperature via the sol-gel method. The CuOx thin film can module the Schottky barrier and form an ohmic contact at the organic/metal interface, which make it a great hole transportation layer. In addition, we post- anneal the devices at 110°C to compensate the defect state at the organic/inorganic interface. Thus, the fill factor of the devices has been increased from 53.3% to 63.5% and the power conversion efficiency of devices has been improved from 3.04% to 3.95%
机译:低成本的解决方案工艺成为制造聚合物太阳能电池的战略原则。然而,由于疏水性问题和PET基底的温度限制,通常通过使用真空蒸发来沉积阴极或阳极夹层。在这里,我们已经成功地在低温下通过PET衬底在倒置的P3HT:PC 61 BM太阳能电池中制造了氧化铜(CuO x )薄膜作为阳极夹层。溶胶-凝胶法。 CuO x 薄膜可以构成肖特基势垒,并在有机/金属界面处形成欧姆接触,这使其成为一个很好的空穴传输层。此外,我们将器件在110°C下进行后退火,以补偿有机/无机界面处的缺陷状态。因此,设备的填充系数从53.3%增加到63.5%,设备的功率转换效率从3.04%提高到3.95%

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