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首页> 外文期刊>Nanoscale >Correlation between nanoscale surface potential and power conversion efficiency of P3HT/TiO2 nanorod bulk heterojunction photovoltaic devices
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Correlation between nanoscale surface potential and power conversion efficiency of P3HT/TiO2 nanorod bulk heterojunction photovoltaic devices

机译:纳米级表面之间的相关性的潜力和功率转换效率P3HT /二氧化钛奈米棒散装异质结光伏设备

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This is an in depth study on the surface potential changes of P3HT/TiO2 nanorod bulk heterojunction thin films. They are affected by interlayer structures, the molecular weight of P3HT, the processing solvents and the surface ligands on the TiO2. The addition of an electron blocking layer and/or the hole blocking layer to the P3HT/TiO2 thin film can facilitate charge carrier transport and result in a high surface potential shift. The changes in surface potential of multilayered bulk heterojunction films are closely correlated to their power conversion efficiency of photovoltaic devices. Changing ligand leads to the largest change in surface potential yielding the greatest effect on the power conversion efficiency. Merely changing the P3HT molecular weight is less effective and varying the processing solvents is least effective in increasing power conversion efficiency. The steric effect of the ligand has a large influence on the reduction of charge carrier recombination resulting in a great effect on the power conversion efficiency. By monitoring the changes in the surface potential of bulk heterojunction film of multilayer structures, we have obtained a useful guide for the fabrication of high performance photovoltaic devices.
机译:表面上这是一个深入研究的潜力P3HT的变化/二氧化钛奈米棒散装异质结薄膜。结构、P3HT的分子量处理溶剂和表面配体二氧化钛。层的阻挡层和/或洞P3HT /二氧化钛薄膜可以促进电荷载体运输和导致表面潜力高转变。多层异质结的电影他们的权力转换密切相关光伏设备的效率。配体最大的变化导致表面可能产生最大的影响能量转化效率。P3HT分子量不太有效不同处理溶剂最小有效提高功率转换效率。很大的影响在减少载体重组导致影响很大功率转换效率。大部分的表面电位的变化多层结构的异质结薄膜,我们得到一个有用的指南制造吗高性能光伏设备。

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