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首页> 外文期刊>Advanced energy materials >Carbon Nanodot Additives Realize High-Performance Air- Stable p-i-n Perovskite Solar Cells Providing Efficiencies of up to 20.2%
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Carbon Nanodot Additives Realize High-Performance Air- Stable p-i-n Perovskite Solar Cells Providing Efficiencies of up to 20.2%

机译:碳纳米点添加剂可实现高性能,空气稳定的p-i-n钙钛矿型太阳能电池,效率高达20.2%

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Carbonized bamboo-derived carbon nanodots (CNDs) as efficient additives for application in perovskite solar cells (PSCs) are reported. These carboxylic acid- and hydroxyl-rich CNDs interact with the perovskite through hydrogen bonds and, thereby, promote the carriers' lifetimes and realize high-performance p-i-n PSCs having the structure indium tin oxide/NiOx/CH3NH3PbI3 (MAPbI(3))/PC61BM/BCP/Ag. As a result of interactions between the CNDs and the perovskite, the presence of the nonvolatile CND additive increases the power conversion efficiency (PCE) of the PSC from 14.48% +/- 0.39% to 16.47% +/- 0.26%. Furthermore, adding urea, a Lewis base, increases the PCE to 20.2%-the result of a significant increase in the crystal size and a lower content of grain boundary defects and, therefore, longer carrier lifetimes. Cells containing these two additives (without encapsulation) exhibit excellent shelf-life and air-stability, maintaining their high PCEs after storage in air-at a temperature of 25 degrees C and a humidity of 40%-for over 500 h. This performance is among of the best ever reported for p-i-n PSC devices incorporating carbon-based additives.
机译:碳化的竹派生碳纳米点(CNDs)作为钙钛矿太阳能电池(PSCs)应用的有效添加剂已被报道。这些富含羧酸和羟基的CND通过氢键与钙钛矿相互作用,从而提高了载流子的寿命,并实现了具有氧化铟锡/ NiOx / CH3NH3PbI3(MAPbI(3))/ PC61BM结构的高性能引脚PSC / BCP / Ag。由于CND和钙钛矿之间的相互作用,非挥发性CND添加剂的存在将PSC的功率转换效率(PCE)从14.48%+/- 0.39%增加到16.47%+/- 0.26%。此外,添加尿素(路易斯碱)可使PCE增至20.2%,这是晶体尺寸显着增加和晶界缺陷含量降低,从而延长了载流子寿命的结果。包含这两种添加剂的电池(无封装)表现出出色的保存期限和空气稳定性,在空气中(温度25摄氏度,湿度40%的环境下)保存500小时后,仍保持较高的PCE。该性能是有史以来针对碳纳米添加剂的p-i-n PSC器件的最佳报告之一。

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