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NbF_5: A Novel a-Phase Stabilizer for FA-Based Perovskite Solar Cells with High Efficiency

机译:NbF_5:一种高效的基于FA的钙钛矿太阳能电池的新型a相稳定剂

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The HC(NH2)(2)(+)(FA(+)) is a well-known substitute to CH3NH3+(MA(+)) for its capability to extend light utilization for improved power conversion efficiency for perovskite solar cells; unfortunately, the dark cubic phase (alpha -phase) can easily transition to the yellow orthorhombic phase (delta -phase) at room temperature, an issue that prevents its commercial application. In this report, an inorganic material (NbF5) is developed to stabilize the desired alpha -phase perovskite material by incorporating NbF5 additive into the perovskite films. It is found that the NbF5 additive effectively suppresses the formation of the yellow delta -phase in the perovskite synthesis and aging process, thus enhancing the humidity and light-soaking stability of the perovskite film. As a result, the perovskite solar cells with the NbF5 additive exhibit improved air stability by tenfold, retaining nearly 80% of their initial efficiency after aging in air for 50 d. In addition, under full-sun AM 1.5 G illumination of a xenon lamp without any UV-reduction, the perovskite solar cells with the NbF5 additive also show fivefold improved illumination stability than the control devices without NbF5.
机译:HC(NH2)(2)(+)(FA(+))是众所周知的CH3NH3 +(MA(+))的替代品,因为它具有扩展光利用率,改善钙钛矿太阳能电池功率转换效率的能力。不幸的是,深色立方相(α-相)在室温下很容易转变为黄色正交相(δ-相),这是阻止其商业应用的问题。在该报告中,开发了一种无机材料(NbF5),通过将NbF5添加剂掺入钙钛矿薄膜中来稳定所需的α相钙钛矿材料。发现NbF5添加剂有效地抑制了钙钛矿合成和老化过程中黄色δ相的形成,从而增强了钙钛矿膜的湿度和光吸收稳定性。结果,具有NbF5添加剂的钙钛矿太阳能电池的空气稳定性提高了十倍,在空气中老化50 d后仍保持了其初始效率的近80%。此外,在氙灯的全日照AM 1.5 G照明下,没有任何紫外线的减少,具有NbF5添加剂的钙钛矿太阳能电池的照明稳定性也比没有NbF5的控制设备提高了五倍。

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