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首页> 外文期刊>ACS applied materials & interfaces >Improving Loading Amount and Performance of Quantum Dot-Sensitized Solar Cells through Metal Salt Solutions Treatment on Photoanode
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Improving Loading Amount and Performance of Quantum Dot-Sensitized Solar Cells through Metal Salt Solutions Treatment on Photoanode

机译:通过光阳极上的金属盐溶液处理提高量子点敏化太阳能电池的装载量和性能

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Increasing QD loading amount on photoanode and suppressing charge recombination are prerequisite for high-efficiency quantum dot-sensitized solar cells (QDSCs). Herein, a facile technique for enhancing the loading amount of QDs on photoanode and therefore improving the photovoltaic performance of the resultant cell devices is developed by pipetting metal salt aqueous solutions on TiO2 film electrode and then evaporating at elevated temperature. The effect of different metal salt solutions was investigated, and experimental results indicated that the isoelectric point (IEP) of metal ions influenced the loading amount of QDs and consequently the photovoltaic performance of the resultant cell devices. The influence of anions was also investigated, and the results indicated that anions of strong acid made no difference, while acetate anion hampered the performance of solar cells. Infrared spectroscopy confirmed the formation of oxyhydroxides, whose behavior was responsible for QD loading amount and thus solar cell performance. Suppressed charge recombination based on Mg2+ treatment under optimal conditions was confirmed by impedance spectroscopy as well as transient photovoltage decay measurement. Combined with high-QD loading amount and retarded charge recombination, the champion cell based on Mg2+ treatment exhibited an efficiency of 9.73% (J(sc) = 27.28 mA/cm(2), V-oc = 0.609 V, FF = 0.585) under AM 1.5 G full 1 sun irradiation. The obtained efficiency was one of the best performances for liquid-junction QDSCs, which exhibited a 10% improvement over the untreated cells with the highest efficiency of 8.85%.
机译:高效率的量子点敏化太阳能电池(QDSC)的前提是增加光阳极上的QD负载量和抑制电荷复合。在此,通过将金属盐水溶液移液到TiO 2膜电极上,然后在高温下蒸发,从而开发出一种容易的技术,该技术用于提高光电阳极上的量子点的负载量,从而提高所得电池装置的光伏性能。研究了不同金属盐溶液的影响,实验结果表明,金属离子的等电点(IEP)影响了QD的负载量,从而影响了所得电池器件的光伏性能。还研究了阴离子的影响,结果表明强酸阴离子没有影响,而乙酸根阴离子则阻碍了太阳能电池的性能。红外光谱证实了羟基氧化物的形成,羟基羟基氧化物的行为是导致QD加载量进而影响太阳能电池性能的原因。通过Mg2 +处理在最佳条件下抑制的电荷重组通过阻抗谱以及瞬态光电压衰减测量得到了证实。结合高QD负载量和延迟的电荷重组,基于Mg2 +处理的冠军细胞表现出9.73%的效率(J(sc)= 27.28 mA / cm(2),V-oc = 0.609 V,FF = 0.585)在AM 1.5 G下充满1次阳光照射。所获得的效率是液接QDSC的最佳性能之一,与未经处理的电池相比,其效率提高了10%,最高效率为8.85%。

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