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11% efficiency solid-state dye-sensitized solar cells with copper(II/I) hole transport materials

机译:具有铜(II / I)空穴传输材料的效率为11%的固态染料敏化太阳能电池

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摘要

Solid-state dye-sensitized solar cells currently suffer from issues such as inadequate nanopore filling, low conductivity and crystallization of hole-transport materials infiltrated in the mesoscopic TiO2 scaffolds, leading to low performances. Here we report a record 11% stable solid-state dye-sensitized solar cell under standard air mass 1.5 global using a hole-transport material composed of a blend of [Cu (4,4′,6,6′-tetramethyl-2,2′-bipyridine)2](bis(trifluoromethylsulfonyl)imide)2 and [Cu (4,4′,6,6′-tetramethyl-2,2′-bipyridine)2](bis(trifluoromethylsulfonyl)imide). The amorphous Cu(II/I) conductors that conduct holes by rapid hopping infiltrated in a 6.5?μm-thick mesoscopic TiO2 scaffold are crucial for achieving such high efficiency. Using time-resolved laser photolysis, we determine the time constants for electron injection from the photoexcited sensitizers Y123 into the TiO2 and regeneration of the Y123 by Cu(I) to be 25?ps and 3.2?μs, respectively. Our work will foster the development of low-cost solid-state photovoltaic based on transition metal complexes as hole conductors.
机译:固态染料敏化太阳能电池目前存在诸如纳米孔填充不足,电导率低以及介孔TiO 2 支架中渗透的空穴传输材料结晶的问题,从而导致性能低下。在这里,我们报告了在全球标准空气质量为1.5的情况下,使用由[Cu(4,4',6,6'-tetramethyl-2, 2'-联吡啶) 2 ](双(三氟甲基磺酰基)酰亚胺) 2 和[Cu(4,4',6,6'-tetramethyl-2,2'-联吡啶) 2 ](双(三氟甲基磺酰基)酰亚胺)。通过渗透到6.5μm厚的介观TiO 2 支架中的快速跳变来导通空穴的非晶态Cu(II / I)导体对于实现如此高的效率至关重要。使用时间分辨激光光解法,我们确定了从光激发敏化剂Y123注入TiO 2 的电子注入和Cu(I)再生Y123的时间常数分别为25?ps和3.2?s , 分别。我们的工作将促进基于过渡金属络合物作为空穴导体的低成本固态光伏的发展。

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