首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Low cost triazatruxene hole transporting material for > 20% efficiency perovskite solar cells
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Low cost triazatruxene hole transporting material for > 20% efficiency perovskite solar cells

机译:低成本三氮氧化物孔输送材料> 20%效率培养太阳能电池

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Organic hole-transporting materials (HTM) have shown excellent ability in achieving high efficiency perovskite solar cells. However, their high cost significantly limits their applications in scaling-up perovskite solar cells. Here, we report an efficient, low-cost HTM, called TAT-(t)BuSty, comprising a central triazatruxene moiety with 3 terminal tert-butoxy styrene groups and 3 hexyl side chains on the indole nitrogen. For the first time, we use an inexpensive liquid precursor to attach the donor ligand to the molecule. This enables purification of the HTM using a silica plug and recrystallization without the need for complicated column chromatography, which is typically required to purify solid-precursor-prepared HTMs. We estimate that the cost for the purified TAT-(t)BuSty is $69.90 g(-1), which is 35% cheaper than the widely-used 2,27,7-tetrakis-(N,N-di-p-methoxyphenyl-amine)-9,9-spirobifluorene (spiro-OMeTAD; ca. $112.05 g(-1)). Using this low-cost TAT-(t)BuSty as the HTM in a caesium-formamidinium mixed-cation perovskite solar cell, we have successfully achieved a champion power conversion efficiency (PCE) of 20.3% (19.4% stabilized efficiency), which is comparable to the efficiency of devices using the reference spiro-OMeTAD HTM. Our work is crucial for up-scaling of next-generation high-performance metal-halide perovskite solar cells.
机译:有机空穴传输材料(HTM)显示了实现高效钙钛矿太阳能电池的优异能力。然而,它们的高成本显着限制了它们在缩放钙钛矿太阳能电池中的应用。在这里,我们报告了一种称为TAT-(T)丰满的高效,低成本的HTM,其包含中央三氮肼部分,其中吲哚氮的3个末端叔丁氧基苯乙烯和3个己基侧链。我们首次使用廉价的液体前体将供体配体连接到分子上。这使得可以使用二氧化硅塞和重结晶来纯化HTM,而无需复合柱色谱,通常需要纯化固体前体制备的HTM。我们估计纯化的TAT-(t)丰满的成本为69.90克(-1),比广泛使用的2,27,7-四乙烯基更便宜35%(N,N-Di-P-甲氧基苯基-amine)-9,9-螺氟丙烯(螺; CA.112.05 G(-1))。使用这种低成本的TAT-(t)作为HTM作为铯 - 甲脒混合阳离子钙钛矿太阳能电池,我们已成功实现了20.3%(稳定效率19.4%)的冠军电力转换效率(PCE),这是使用参考螺纹欧姆特HTM的设备效率相当。我们的作品对于下一代高性能金属卤化物钙钛矿太阳能电池的上升至关重要。

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