Hysteresis dependence on CH3NH3PbI3 deposition method in perovskite solar cells

S. L. Fernandes, B. Bregadiolli, A. Véron, F. Nüesch, M. A. Zaghete, Carlos Frederico de Oliveira Graeff
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引用次数: 3

Abstract

CH3NH3PbI3 perovskite solar cells are one of the most exciting technologies in the renewable energy field, resulting in over 20% power conversion efficiency. Deep understanding of the working principle is now required to turn the high efficiency solar cells into a reliable technology. In this work we have explored the role of deposition method on the crystallinity of perovskite films and its influence on the hysteresis behavior of the current-voltage characteristics. In addition Nb2O5 was used as hole blocking layer and its influence is also discussed. We have found that hysteresis is strongly dependent on both; perovskite deposition method and Nb2O5 thickness. The ideal condition where the hysteresis is suppressed or minimized was achieved by using the sequential deposition method for the perovskite semiconductor and a hole blocking layer of 50 nm.
钙钛矿太阳能电池中CH3NH3PbI3沉积方法的迟滞依赖性
CH3NH3PbI3钙钛矿太阳能电池是可再生能源领域最令人兴奋的技术之一,其功率转换效率超过20%。要将高效太阳能电池转化为可靠的技术,需要深入了解其工作原理。在这项工作中,我们探讨了沉积方法对钙钛矿薄膜结晶度的作用及其对电流-电压特性的滞后行为的影响。此外,还讨论了Nb2O5作为堵孔层的影响。我们发现迟滞与两者都有很强的依赖性;钙钛矿沉积方法与Nb2O5厚度。采用顺序沉积方法对钙钛矿半导体和50 nm的孔阻挡层进行沉积,得到了抑制或最小化迟滞的理想条件。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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