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Role of BCP layer on nonlinear properties of perovskite solar cell

机译:BCP层对钙钛矿太阳能电池非线性性质的作用

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摘要

Organic-inorganic hybrid halide perovskite materials have been most attractive for wide range of optoelectronic applications. Investigating the photo-response in these devices will be very useful to understanding cell performance in different conditions and applications. For understanding non-linearity photo-response we use the Bathocuproine (BCP) as blocking layer in two interfaces of inverted perovskite solar cell (FTO/NiO/BCP/Perovskite/PCBM/Au and FTO/NiO/Perovskite/PCBM/BCP/Au). Employing thick BCP layer (approximate to 15 nm) caused s-shaped JV curve due to charge accumulation at interfaces. The nonlinearity effect was also explored for devices with s-shaped JV and established that device parameters respect to light intensity were nonlinear. Short circuit current had a nonlinear response respect to light intensity while the voltage behavior in terms of light intensity indicated that monomolecular recombination is dominant mechanism. The open circuit voltage is almost 100% nonlinear from 1 to 0.1 sun in device A, while in second device shown from 1 to 0.5 sun almost 50% nonlinearity. The results suggest that our simple strategy not only can be useful for understanding how cell performance is but also can be used in some optical setup such as Focus induced photo-response (FIP).
机译:有机无机杂交卤化物钙钛矿材料对于广泛的光电应用而言最吸引人。调查这些设备中的照片响应对于在不同条件和应用中理解细胞性能非常有用。为了了解非线性照片响应,我们将浴缸普罗宁(BCP)用作倒立钙钛矿太阳能电池(FTO / NIO / BCP / PEROVSKITE / PCBM / AU和FTO / NIO / PEROVSKITE / PCBM / BCP / AU)中的阻塞层)。采用厚的BCP层(近似为15nm)导致S形JV曲线由于接口处的电荷累积而导致的S形JV曲线。对于具有S形JV的器件,还探索了非线性效果,并确定了装置参数对光强度的倾向非线性。短路电流具有非线性响应的光强度,而在光强度方面的电压特性表明单分子重组是显性机制。在装置A中,开路电压几乎是1至0.1阳光的100%非线性,而在1至0.5太阳的第二器件中,几乎为50%的非线性。结果表明,我们的简单策略不仅可以了解蜂窝性能,也可以用于一些光学设置,例如聚焦引起的光响应(FIP)。

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