首页> 外文会议>Conference on Organic Photovoltaics IV; Aug 7-8, 2003; San Diego, California, USA >Photovoltaic cells of fullerene / poly-phenylenevinylene derivative prepared by spray deposition
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Photovoltaic cells of fullerene / poly-phenylenevinylene derivative prepared by spray deposition

机译:喷雾沉积制备富勒烯/聚亚苯基亚乙烯基衍生物的光伏电池

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The spray deposition method has been developed as a new way of polymer ultra-thin film preparation for organic optoelectronic devices such as an organic photovoltaic cell (OPC). In this method, a highly diluted solution of an organic material is nebulized into air and concentrated under a controlled evaporation condition. The resulting aerosol is transported by a carrier gas and deposited onto a solid substrate. This method has substantial advantages that an almost insoluble and non-evaporative material can be fabricated into a thin film, and that a separate area coating and layer-by-layer structure of polymer materials can be preformed. An OPC was prepared from highly diluted THF solutions (below 1 ppm) of fullerene / poly-phenylenevinylene (PPV) derivative mixture. The device configulation, ITO / PEDOT-PSS / fullerene-PPV / LiF / Al, is known as a bulk hetero-junction PC. By control of temperature, we obtained homogeneous active layer by spray deposition. In addition, we can achieve power conversion efficiency of 0.63% using the active layer consist of fullerene: PPV(1:1). This method has significant potential to provide a structural control of the active layer and to reduce the cost of the OPCs drastically in spite that the power conversion efficiency is slightly lower than a PC prepared in same ratio by spin-coating.
机译:喷涂沉积方法已被开发为用于有机光电器件(例如有机光伏电池(OPC))的聚合物超薄膜制备的新方法。在这种方法中,将高度稀释的有机材料溶液雾化到空气中,并在受控的蒸发条件下进行浓缩。产生的气溶胶由载气运输并沉积在固体基质上。该方法具有显着的优点,即可以将几乎不溶且不蒸发的材料制成薄膜,并且可以预形成单独的区域涂层和聚合物材料的逐层结构。由富勒烯/聚亚苯基亚乙烯基(PPV)衍生物混合物的高度稀释的THF溶液(低于1 ppm)制备OPC。 ITO / PEDOT-PSS /富勒烯-PPV / LiF / Al器件配置被称为体异质结PC。通过控制温度,我们通过喷涂获得了均匀的活性层。此外,使用由富勒烯:PPV(1:1)组成的有源层,我们可以实现0.63%的功率转换效率。尽管功率转换效率比通过旋涂以相同比例制备的PC略低,但该方法具有提供活性层结构控制和显着降低OPC成本的巨大潜力。

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