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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Influence of Donor Groups of Organic D-π-A Dyes on Open-Circuit Voltage in Solid-State Dye-Sensitized Solar Cells
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Influence of Donor Groups of Organic D-π-A Dyes on Open-Circuit Voltage in Solid-State Dye-Sensitized Solar Cells

机译:有机D-π-A染料供体基团对固态染料敏化太阳能电池开路电压的影响

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摘要

In solid-state dye-sensitized solar cells (ssDSCs), the poor pore filling of the mesoporous semiconductor and the short diffusion length of charge carriers in the hole-transport material (HTM) have limited the mesoscopic titania layer to a thickness of 2-3 μm. To increase the amount of light harvested by ssDSCs, organic dyes with high molar extinction coefficients are of great importance and have been the focus of intensive research. Here we investigate ssDSCs using an organic D-π-A dye, coded Y123, and 2,2',7,7'-tetrakis(N,N-di-p-methoxyphenylamine)-9,9'-spirobifluorene as a hole-transport material, exhibiting 934 mV open-circuit potential and 6.9% efficiency at standard solar conditions (AM1.5G, 100 mW cm~(-2)), which is a significant improvement compared to the analogue dyes C218, C220, and JK2 (V_(oc) valuesof 795, 781, and 914 mV, respectively). An upward shift in the conduction band edge was observed from photovoltage transient decay and impedance spectroscopy measurements for devices sensitized with Y123 and JK2 dyes compared to the device using C220 as sensitizer, in agreement with the high photovoltage response of the corresponding ssDSCs. This work highlights the importance of the interaction between the HTM and the dye-sensitized TiO2 surface for the design of ssDSCs.
机译:在固态染料敏化太阳能电池(ssDSC)中,介孔半导体的不良孔填充和空穴传输材料(HTM)中电荷载流子的短扩散长度将介观二氧化钛层的厚度限制为2- 3微米为了增加ssDSCs收集的光量,具有高摩尔消光系数的有机染料非常重要,并且已经成为深入研究的重点。在这里,我们研究使用有机D-π-A染料Y123和2,2',7,7'-四(N,N-二-对甲氧基苯胺)-9,9'-螺二芴为孔的ssDSCs -运输材料,在标准太阳条件下(AM1.5G,100 mW cm〜(-2))表现出934 mV的开路电势和6.9%的效率,与模拟染料C218,C220和JK2相比有重大改进(V_(oc)值分别为795、781和914 mV)。与使用C220作为敏化剂的器件相比,用Y123和JK2染料敏化的器件的光电压瞬态衰减和阻抗谱测量发现,导带边缘有向上偏移,这与相应ssDSC的高光电压响应相一致。这项工作强调了HTM和染料敏化的TiO2表面之间的相互作用对于ssDSCs设计的重要性。

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