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Unravelling the low-temperature metastable state in perovskite solar cells by noise spectroscopy

机译:通过噪声光谱通过噪声光谱解开钙钛矿太阳能电池中的低温稳定状态

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The hybrid perovskite methylammonium lead iodide CH3NH3PbI3 recently revealed its potential for the manufacturing of low-cost and efficient photovoltaic cells. However, many questions remain unanswered regarding the physics of the charge carrier conduction. In this respect, it is known that two structural phase transitions, occurring at temperatures near 160 and 310?K, could profoundly change the electronic properties of the photovoltaic material, but, up to now, a clear experimental evidence has not been reported. In order to shed light on this topic, the low-temperature phase transition of perovskite solar cells has been thoroughly investigated by using electric noise spectroscopy. Here it is shown that the dynamics of fluctuations detect the existence of a metastable state in a crossover region between the room-temperature tetragonal and the low-temperature orthorhombic phases of the perovskite compound. Besides the presence of a noise peak at this transition, a saturation of the fluctuation amplitudes is observed induced by the external DC current or, equivalently, by light exposure. This noise saturation effect is independent on temperature, and may represent an important aspect to consider for a detailed explanation of the mechanisms of operation in perovskite solar cells.
机译:Hybrid Perovskite甲基甲基铅碘化物CH3NH3PBI3最近透露了其制造低成本和高效的光伏电池的潜力。然而,许多问题对电荷载波传导的物理仍未答复。在这方面,已知在160和310?K附近的温度下发生的两个结构相变,可以深刻地改变光伏材料的电子性质,但是,到目前为止,尚未报告明确的实验证据。为了阐明闪光,通过使用电噪声光谱,已经通过彻底研究了钙钛矿太阳能电池的低温相转变。这里表明波动的动态检测在室温四边形和钙钛矿化合物的低温正晶相之间的交叉区域中的存在状态。除了在该转变时存在噪声峰之外,通过曝光,通过外部DC电流或等效地观察到波动幅度的饱和度。这种噪声饱和度效应在温度下独立,并且可以表示用于考虑钙钛矿太阳能电池中操作机制的详细说明的重要方面。

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