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首页> 外文期刊>Photovoltaics, IEEE Journal of >A Simple Cost-Effective Approach to Enhance Performance of Bifacial Dye-Sensitized Solar Cells
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A Simple Cost-Effective Approach to Enhance Performance of Bifacial Dye-Sensitized Solar Cells

机译:一种简单的具有成本效益的方法来增强双面染料敏化太阳能电池的性能

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摘要

A simple cost-effective approach was demonstrated to increase the rear efficiency and ratio of rear-to-front efficiencies for bifacial dye-sensitized solar cells (DSCs). This was achieved by enhancing the transparency of the counter electrode of the DSC using a composite of platinum- and aluminum-doped zinc oxide (Pt/AZO). The thermally deposited composite Pt/AZO counter electrodes exhibited transmittance T550 nm = 0.70–0.74 versus Pt with 0.63. The comparable front power conversion efficiency (PCEfront) of fabricated DSCs using the composite Pt/AZO counter electrodes suggested that the presence of AZO in the composite had minimal effect on the catalytic activity of the platinum. DSCs with composite Pt/AZO counter electrode presented superior rear PCEs compared with platinum counterparts and was attributed to higher short-circuit current density resulting from the larger transmittance of the composite counter electrode. The higher PCErear/PCEfront of the composite-based DSCs compared with Pt-based DSC suggested that such transparent composite counter electrodes could be employed in bifacial DSCs.
机译:事实证明,一种简单的具有成本效益的方法可以提高双面染料敏化太阳能电池(DSC)的后效率和后效率与前效率的比率。这是通过使用掺杂铂和铝的氧化锌(Pt / AZO)的复合材料增强DSC对电极的透明度来实现的。热沉积复合Pt / AZO对电极的透射率T550 nm = 0.70–0.74,而Pt为0.63。使用复合Pt / AZO对电极制造的DSC具有相当的前端功率转换效率(PCEfront),表明复合物中AZO的存在对铂的催化活性影响最小。与铂对应物相比,具有复合Pt / AZO对电极的DSC具有更好的背面PCE,并且归因于由于复合对电极的更大透射率而导致的短路电流密度更高。与基于Pt的DSC相比,基于复合材料的DSC具有更高的PCErear / PCEfront,这表明这种透明的复合对电极可用于双面DSC。

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