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Co-sensitization Promoted Light Harvesting for Dye-Sensitized Solar Cells

机译:共敏化促进了染料敏化太阳能电池的光收集

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Co-sensitization of two sensitizers on core/shell TiO2-Nb2O5 with Ta2O5 scattering layer photoanode arranged in different sequences are investigated for application to dye sensitized solar cells (DSSCs). The co-sensitization of N719/Coumarin and CdS-CdSe quantum dots/Coumarin exhibited enhanced photovoltaic performances for the pertinent cells compared with the cell made from corresponding individual sensitizers. In the present investigation, co-sensitization by N719/Coumarin showed better photovoltaic performance and have the power conversion efficiency (PCE) of 9.9 % while the performances of cells with the individual sensitizers are 8.2 % (N719) and 6.9 % (Coumarin) respectively. The PCE of DSSC with CdS-CdSe/Coumarin co-sensitization is found to be 8.7 % whereas the performances of DSSCs with the individual sensitizers are 4.5 % (CdS-CdSe) and 6.9 % (Coumarin) respectively. These results indicated that the co-sensitization of sensitizers promoted the light harvesting efficiency of DSSCs as compared the cells with the consequent individual sensitizers.
机译:研究了两种增敏剂在核/壳TiO2-Nb2O5上与Ta2O5散射层光阳极按不同顺序共增敏的应用,以应用于染料敏化太阳能电池(DSSC)。 N719 / Coumarin和CdS-CdSe量子点/ Coumarin的共敏化显示,与由相应的敏化剂制成的电池相比,相关细胞的光伏性能更高。在本研究中,N719 / Coumarin的共敏化显示了更好的光伏性能,并且具有9.9%的功率转换效率(PCE),而带有单独敏化剂的电池的性能分别为8.2%(N719)和6.9%(Coumarin) 。发现具有CdS-CdSe / Coumarin共敏化的DSSC的PCE为8.7%,而具有单独的敏化剂的DSSC的性能分别为4.5%(CdS-CdSe)和6.9%(Coumarin)。这些结果表明,与细胞和随后的各个敏化剂相比,敏化剂的共敏化提高了DSSC的光收集效率。

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