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High-Performance Plastic Dye-sensitized Solar Cells Based on Low-Cost Commercial P25 TiO2 and Organic Dye

机译:基于低成本商用P25 TiO2和有机染料的高性能塑料染料敏化太阳能电池

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摘要

High-performance plastic dye-sensitized solar cells (DSCs) based on low-cost commercial Degussa P25 TiO2 and organic indoline dye D149 have been fabricated using electrophpretic deposition (EPD) with compression post-treatment at room temperature. The pressed EPD electrode outperformed the sintered EPD electrode and as-prepared EPD electrode in short-circuit current density and power conversion efficiency. About 150% and 180% enhancement in power conversion efficiency have been achieved in DSC devices with sintering and compression post-treatment as compared to the as-prepared electrode, respectively. Several characterizations including intensity modulated photocurrent spectroscopy, incident photon-to-electron conversion efficiency and electrochemical impedance spectra have been employed to reveal the nature of improvement with post-treatment. Experimental results indicate that the sintering and compression post-treatment are beneficial to improve the electron transport and thus lead to the enhancement of photocurrent and power conversion efficiency. In addition, the compression post-treatment is more efficient than sintering post-treatment in improving interparticle connection in the as-prepared EPD electrode. Under optimized conditions, the conversion efficiency of plastic devices with D149-sensitized P25 TiO2 photoanode has reached 5.76% under illumination of AM 1.5G (100 mW cm~(-2)). This study demonstrates that the EPD combined with compression post-treatment provides a way to fabricate highly efficient plastic photovoltaic devices.
机译:基于低成本商业德固赛(Degussa)P25 TiO2和有机吲哚染料D149的高性能塑料染料敏化太阳能电池(DSC)是利用电沉积法(EPD)并在室温下进行压缩后处理而制造的。压制的EPD电极在短路电流密度和功率转换效率方面优于烧结的EPD电极和制备的EPD电极。与准备好的电极相比,在具有烧结和压缩后处理的DSC器件中,功率转换效率分别提高了约150%和180%。包括强度调制光电流能谱,入射光子至电子的转换效率和电化学阻抗谱在内的几种表征已被用来揭示后处理改进的性质。实验结果表明,烧结和压缩后处理有利于改善电子传输,从而提高光电流和功率转换效率。另外,压缩后处理在改善所制备的EPD电极中的颗粒间连接方面比烧结后处理更有效。在优化的条件下,在AM 1.5G(100 mW cm〜(-2))的光照下,具有D149敏化的P25 TiO2光电阳极的塑料器件的转换效率达到5.76%。这项研究表明,EPD与压缩后处理相结合提供了一种制造高效塑料光伏器件的方法。

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