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Bifacial dye-sensitized solar cells with enhanced rear efficiency and power output

机译:色素增感太阳能电池有两面的增强后效率和输出功率

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摘要

Pursuing a high power conversion efficiency with no sacrifice of cost-effectiveness has been a persistent objective for dye-sensitized solar cells (DSSCs). One promising solution to this impasse is increased light harvesting. Previous efforts in light harvesting have been made on setting blocking layers or reflecting layers, or adding a light harvester, resulting in tedious procedures without reducing the expenses. We present a mild solution strategy for synthesizing transparent Ru-Se alloy counter electrodes (CEs) for bifacial DSSC applications, displaying optimal front and rear efficiencies of 8.76% and 5.90%, respectively. In comparison with pristine Pt-based solar cells, the maximum power output has also been markedly enhanced. Moreover, fast start-up, high multiple start capability, and good stability are observed in the bifacial DSSCs with transparent Ru-Se binary alloy electrodes. The impressive efficiencies along with simple preparation of the cost-effective Ru-Se alloy CEs demonstrates their potential application in robust DSSCs.
机译:追求高功率转换效率没有牺牲的成本效益色素增感太阳能。持续的目标细胞(DSSCs)。僵局增加光收获。在光的努力收获了设置屏蔽层或反映层,或添加一个光收割机,导致乏味程序没有减少费用。提供一个温和的合成策略的解决方案透明柜台Ru-Se合金电极(CEs)对于有两面的DSSC应用,显示优化前后的效率约为8.76%5.90%,分别。Pt-based太阳能电池最大功率的输出也明显提高。启动,高多重启动能力,良好的稳定性是双面DSSCs观察用透明Ru-Se二元合金电极。令人印象深刻的效率和简单制备的具有成本效益的Ru-Se合金CEs上展示了他们的潜在的应用robust DSSCs。

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