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Efficient dye-sensitized solar cells with broad absorption and enhanced photo-current generation

机译:高效染料敏化太阳能电池,具有广泛的吸收和增强的光电流产生

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摘要

Metal-free organic dyes comprising donor, electron-conducting, and acceptor moieties with anchoring groups were designed and synthesized for the sensitization of hierarchically structured TiO _(2) (HS-TiO _(2) ) nanoaggregates of TiO _(2) electrode. The performance of JH-2 in a dye sensitized solar cell (DSSC) was compared with the performances of JH-1 and PTD-02. The DSSC of JH-2 with the HS-TiO _(2) electrode yielded an unprecedented high photocurrent density of 21.62 mA cm ~(?2) , an open circuit voltage of 691 mV and a fill factor of 0.631, and an overall efficiency of 9.42% under standard AM 1.5 sunlight. These were superior to those obtained from the JH-1 DSSC or the PTD-02 sensitizer, which has a chemical structure similar to JH-1, but displayed a much lower photocurrent density and efficiency. The performance of JH-2 DSSC developed here can offer an efficiency comparable to that of a popular ruthenium-coordinated dye (N719) while providing better long-term stability even without a UV filter.
机译:包括供体,电子传导和受锚固组的无金属有机染料,设计和合成,用于致沉体结构的TiO _(2)(HS-TiO _(2))的TiO _(2)电极的纳米聚糖。将JH-2在染料敏化太阳能电池(DSSC)中的性能与JH-1和PTD-02的性能进行了比较。具有HS-TiO _(2)电极的JH-2的DSSC,产生前所未有的高光电流密度为21.62mAcm〜(Δ2),开路电压为691 mV,填充因子为0.631,以及整体效率标准am 1.5阳光下的9.42%。这些优于由JH-1 DSSC或PTD-02敏化剂获得的那些,其具有与JH-1类似的化学结构,但呈现了更低的光电流密度和效率。这里开发的JH-2 DSSC的性能可以提供与流行的钌协调染料(N719)相当的效率,同时即使没有紫外线过滤器也能提供更好的长期稳定性。

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