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Huge suppression of charge recombination in P3HT-ZnO organic-inorganic hybrid solar cells by locating dyes at the ZnO/P3HT interfaces

机译:通过在ZnO / P3HT界面定位染料通过定位染料巨大抑制P3HT-ZnO有机 - 无机混合太阳能电池的电荷重组

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摘要

The charge separation and charge recombination dynamics in P3HT-ZnO and P3HT-dye-ZnO bulk heterojunction organic-inorganic hybrid solar cells (OIHSCs) prepared by a one-pot method were studied using a transient absorption (TA) method, both for optical absorption of P3HT in the visible region and for optical absorption of SQ36 in the NIR region. In the case of P3HT-ZnO, the charge separation was very fast, occurring within 1 ps. On the other hand, high charge recombination between electrons in the surface states and/or the conduction band of ZnO and holes in P3HT was observed. In the case of P3HT-dye-ZnO, we found that the charge recombination could be greatly suppressed by locating the dye at the P3HT/ZnO interfaces while maintaining a fast charge separation rate (a few ps to 10 ps). Our findings provide one methodology for the design of OIHSCs for improving their conversion efficiency, which is to position the dye at the appropriate BHJ interfaces.
机译:使用瞬态吸收(TA)方法研究了P3HT-ZnO和P3HT-染料-ZNO杂交类杂交类异质结合有机 - 无机混合太阳能电池(OIHSCS)的电荷分离和电荷重组动力学,用于光学吸收 P3HT在可见区域中和NIR区域中SQ36的光学吸收。 在P3HT-ZnO的情况下,电荷分离非常快,在1 ps内发生。 另一方面,观察到表面状态和/或ZnO和孔的导电带之间的高电荷重组和P3HT中的孔中的导电。 在P3HT-DYE-ZnO的情况下,我们发现通过在P3HT / ZnO界面处定位染料,可以大大抑制电荷重组,同时保持快速电荷分离速率(几PE至10 ps)。 我们的研究结果为OIHSCS设计提供了一种方法,用于提高其转换效率,即在适当的BHJ界面处定位染料。

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    Department of Engineering Science Faculty of Informatics and Engineering The University of Electro-Communications 1-5-1 Chofugaoka Chofu Tokyo 182-8585 Japan.;

    CREST Japan Science and Technology Agency (JST) 4-1-8 Honcho Kamaguchi Saitama 332-0012 Japan.;

    Graduate School of Life Science and Systems Engineering Kyushu Institute of Technology 2-4 Hibikino Wakamatsu Kitakyushu 808-0196 Japan;

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