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Study on Preparation of Flexible Semiconductor Electrode for Dye-sensitized Solar Cells by EPD

机译:EPD法制备染料敏化太阳能电池柔性半导体电极的研究

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In recent years, the development of DSSC produced considerable research interest, including improving efficiency, packaging and flexible possibilities. Flexible possibility has great potential for all kinds of applications. Researches on the bendability of the solar cell thin sheets are mostly focus on the making the soft substrate or electrodes. Previous studies showed that coating method of TiO_(2) semiconductor electrodes cracked after bending. This phenomenon makes the DSSC efficiency and lifetime substantially decline. The electrophoretic deposition (EPD) technique with a wide range of novel applications in the processing of advanced materials and coatings, has recently gained increasing interest both in academia and industrial sector not only because of the high versatility of its use with different materials and their combinations but also because of its cost-effectiveness requiring simple apparatus. This study used a flexible conductive material (ITO-PEN) as substrate. The semiconductor electrode was prepared by eletrophoresis deposition (EPD) method. After bending test, we observe the morphology and electrical properties of semiconductor electrodes. The photocurrent-voltage characteristics of assembled the DSSC were measured by Luzchem Solar Simulator (standard AM 1.5). Results of flexible DSSC indicated that feature enables the flexible solar cells after bending to avoid fragmentation of semiconductor electrodes, and the efficiency doesn't decrease.
机译:近年来,DSSC的发展引起了相当大的研究兴趣,包括提高效率,包装和灵活的可能性。灵活的可能性对于各种应用都有巨大的潜力。关于太阳能电池薄板的可弯曲性的研究主要集中在制造软衬底或电极上。先前的研究表明,TiO_(2)半导体电极的涂覆方法在弯曲后会破裂。这种现象使DSSC的效率和使用寿命大大降低。电泳沉积(EPD)技术在先进材料和涂料的处理中具有广泛的新颖应用,最近,不仅由于其与不同材料及其组合一起使用的多功能性,还引起了学术界和工业界的越来越多的关注而且还因为其成本效益需要简单的设备。本研究使用柔性导电材料(ITO-PEN)作为基材。通过电泳沉积(EPD)方法制备半导体电极。经过弯曲测试,我们观察了半导体电极的形貌和电性能。通过Luzchem Solar Simulator(标准AM 1.5)测量组装的DSSC的光电流-电压特性。柔性DSSC的结果表明,该功能使弯曲后的柔性太阳能电池能够避免半导体电极碎裂,并且效率不会降低。

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