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首页> 外文期刊>Advanced materials interfaces >A Low-Temperature, Solution Processable Tin Oxide Electron-Transporting Layer Prepared by the Dual-Fuel Combustion Method for Efficient Perovskite Solar Cells
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A Low-Temperature, Solution Processable Tin Oxide Electron-Transporting Layer Prepared by the Dual-Fuel Combustion Method for Efficient Perovskite Solar Cells

机译:通过双燃料燃烧方法制备的高效钙钛矿型太阳能电池低温可溶液加工的氧化锡电子传输层

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摘要

Although tin oxide (SnO_2) has been employed recently as an efficient electron-transporter to realize highly efficient organometal halide perovskite solar cells (PVSCs), it is still quite challenging to apply it through facile solution-based synthesis at low enough temperature (<150 °C) to be compatible with the roll-to-roll printing on polymer substrates. In this work, a dual-fuel combustion method has been successfully adapted to modulate the exothermic characteristics and processing temperature (140 °C) of SnO_2 to achieve homogeneous and crystalline thin film as efficient electron-transporting layer for PVSCs. The fabricated SnO_2 film not only has high transparency (from 350 nm to near-infrared region) but also possesses good electron extraction ability, as evidenced by the efficient PL quenching in bilayered SnO_2 /CH_3 NH_3 PbI_3 film. By passivating SnO_2 surface with a C_(60)-containing self-assembled monolayer (C_(60) -SAM), a high power conversion efficiency (PCE_(max)) of >15% with negligible hysteresis can be achieved in PVSC. This demonstrates the great potential of applying this dual-fuel combustion process to improve processability and charge-transporting properties of metal oxides for organic electronics applications.
机译:尽管氧化锡(SnO_2)最近已被用作实现高效有机金属卤化物钙钛矿太阳能电池(PVSC)的高效电子传输剂,但在足够低的温度下(<150 °C)以与在聚合物基材上的卷对卷印刷兼容。在这项工作中,已经成功地采用了双燃料燃烧方法来调节SnO_2的放热特性和处理温度(140°C),以实现均匀且结晶的薄膜作为PVSC的有效电子传输层。制备的SnO_2膜不仅具有高的透明性(从350 nm到近红外区域),而且还具有良好的电子提取能力,这是由双层SnO_2 / CH_3 NH_3 PbI_3膜中的有效PL猝灭所证明的。通过用含C_(60)的自组装单层(C_(60)-SAM)钝化SnO_2表面,可以在PVSC中实现> 15%的高功率转换效率(PCE_(max)),且滞后可以忽略。这证明了使用这种双燃料燃烧过程来改善有机电子应用中金属氧化物的可加工性和电荷传输性能的巨大潜力。

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