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首页> 外文期刊>Scientific reports. >A Robust Organic Dye for Dye Sensitized Solar Cells Based on Iodine/Iodide Electrolytes Combining High Efficiency and Outstanding Stability
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A Robust Organic Dye for Dye Sensitized Solar Cells Based on Iodine/Iodide Electrolytes Combining High Efficiency and Outstanding Stability

机译:一种基于碘/碘化物电解质的高效染料染料稳定太阳能电池,兼具高效率和出色的稳定性

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Among the new photovoltaic technologies, the Dye-Sensitized Solar Cell (DSC) is becoming a realistic approach towards energy markets such as BIPV (Building Integrated PhotoVoltaics). In order to improve the performances of DSCs and to increase their commercial attractiveness, cheap, colourful, stable and highly efficient ruthenium-free dyes must be developed. Here we report the synthesis and complete characterization of a new purely organic sensitizer (RK1) that can be prepared and synthetically upscaled rapidly. Solar cells containing this orange dye show a power conversion efficiency of 10.2% under standard conditions (AM 1.5G, 1000?Wm?2) using iodine/iodide as the electrolyte redox shuttle in the electrolyte, which is among the few examples of DSC using an organic dyes and iodine/iodide red/ox pair to overcome the 10% efficiency barrier. We demonstrate that the combination of this dye with an ionic liquid electrolyte allows the fabrication of solar cells that show power conversion efficiencies of up to 7.36% that are highly stable with no measurable degradation of initial performances after 2200?h of light soaking at 65°C under standard irradiation conditions. RK1 achieves one of the best output power conversion efficiencies for a solar cell based on the iodine/iodide electrolyte, combining high efficiency and outstanding stability.
机译:在新的光伏技术中,染料敏化太阳能电池(DSC)正在成为针对能源市场(如BIPV(建筑集成光伏))的现实方法。为了改善DSC的性能并增加其商业吸引力,必须开发廉价,有色,稳定和高效的无钌染料。在这里,我们报告了一种新型的纯有机敏化剂(RK1)的合成和完整表征,该合成剂可以快速制备和合成。含有这种橙色染料的太阳能电池在标准条件下(AM 1.5G,1000?Wm ?2 )使用碘/碘化物作为电解质中的氧化还原梭,其功率转换效率为10.2%。在使用有机染料和碘/碘化物红/牛对以克服10%的效率障碍的DSC的几个例子中。我们证明了这种染料与离子液体电解质的结合可以制造出显示出高达7.36%的功率转换效率的太阳能电池,该电池具有很高的稳定性,并且在65°C的光下浸泡2200?h后其初始性能没有可测量的降低C在标准照射条件下。 RK1实现了基于碘/碘化物电解质的太阳能电池最佳的输出功率转换效率之一,兼具高效率和出色的稳定性。

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