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Photovoltaic responses in ionically self-assembled nanostructures containing conjugated polymers and fullerenes

机译:离子自组装纳米结构中的光伏响应含有共轭聚合物和富勒烯

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We use the technique of ironically self-assembled monolayers (ISAMs) to produce photovoltaic devices of well-controlled thickness and composition. The ISAM nanostructure fabrication method simply involves the alternate dipping of a charged substrate into aqueous cationic and anionic solutions at room temperature. We have employed several approaches to combine the tetrahydrothiophenium precursor of PPV with fullerenes and other organic materials .We apply modulation spectroscopy for the electro-optical characterization of the ISAM-devices. Analyzing the thickness dependence of the recorded photocurrent action spectra allows us to identify the photoactive region within the devices. The modulation frequency dependence of the photocurrent can be assigned to the influence of trapped charges taking part in the photovoltaic process. By utilizing the ability to control both thickness and composition of the organic layer at a nanometer level of precision, the composition and concentration of these defects has ben systematically varied.
机译:我们使用具有讽刺的自组装单层(ISAMS)的技术,以生产良好控制的厚度和组成的光伏器件。 ISAM纳米结构制造方法简称涉及在室温下将带电基材的替代浸入阳离子和阴离子溶液中。我们采用了几种方法来将PPV的四氢噻吩前体与富勒烯和其他有机材料结合起来。我们施加调制光谱,用于ISAM器件的电光表征。分析记录的光电流动作谱的厚度依赖性允许我们识别器件内的光活性区域。光电流的调制频率依赖性可以分配给捕获电荷在光伏过程中的影响。通过利用在纳米精确度下控制有机层的厚度和组成的能力,这些缺陷的组成和浓度具有系统地变化。

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