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Protoporphyrin IX on HO2 electrode: A spectroscopic and photovoltaic investigation

机译:HO2电极上的原卟啉IX:光谱和光伏研究

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摘要

The photoinduced electron injection of protoporphyrin IX/TiO2 thin film has been studied using time-resolved absorption and fluorescence spectroscopy. Steady state results showed that, adsorption of protoporphyrin IX onto the surface of TiO2 particles extended its absorption further into the visible region; on the other hand the fluorescence of protoporphyrin IX/TiO2 film was completely quenched. Lifetime measurements and time-resolved absorption spectra gave the rate constant for the electron injection process from the excited singlet and triplet states of protoporphyrin IX into the conduction band of the semiconductor as 7.5 x 10~9 s~(-1) and 1.5 x 10~5 s~(-1), respectively. Devices were fabricated containing either protoporphyrin IX or a ruthenium derived dye and their photovoltaic performances were measured using a solar simulator under AM 1.5 illumination. The devices exhibited power conversion efficiency of 0.8% and 4.4% respectively. These results will provide fundamental and precious information on the development of dye-sensitized solar cells with natural systems.
机译:利用时间分辨吸收和荧光光谱研究了原卟啉IX / TiO2薄膜的光诱导电子注入。稳态结果表明,原卟啉IX在TiO2颗粒表面的吸附进一步将其吸收扩展到可见光区域。另一方面,原卟啉IX / TiO2薄膜的荧光被完全淬灭。寿命测量和时间分辨吸收光谱给出了电子注入过程的速率常数,从原卟啉IX的激发单重态和三重态进入半导体的导带为7.5 x 10〜9 s〜(-1)和1.5 x 10 〜5 s〜(-1)。制造包含原卟啉IX或钌衍生染料的设备,并使用太阳模拟器在AM 1.5照明下测量其光伏性能。该器件的功率转换效率分别为0.8%和4.4%。这些结果将为开发具有自然系统的染料敏化太阳能电池提供基础和宝贵的信息。

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