Glowienka Damian, Galagan Yulia
Department of Materials Science and Engineering, National Taiwan University, No.1, Roosevelt Road, Section 4, Taipei, 106, Taiwan.
Faculty of Applied Physics and Mathematics, Gdańsk University of Technology, Narutowicza 11/12, Gdańsk, 80-233, Poland.
Adv Mater. 2022 Jan;34(2):e2105920. doi: 10.1002/adma.202105920. Epub 2021 Nov 16.
The number of publications on perovskite solar cells (PSCs) continues to grow exponentially. Although the efficiency of PSCs has exceeded 25.5%, not every research laboratory can reproduce this result or even pass the border of 20%. Unfortunately, it is not always clear which dominating mechanism is responsible for the performance drop. Here, a simple method of light intensity analysis of the JV parameters is developed, allowing an understanding of what the mechanisms are that appear in the solar cell and limit device performance. The developed method is supported by the drift-diffusion model and is aimed at helping in the explanation of parasitic losses from the interface or bulk recombination, series resistance, or shunt resistance in the perovskite solar cell. This method can help not only point toward the dominating of bulk or interface recombination in the devices but also determine which interface is more defective. A detailed and stepwise guidance for such a type of light intensity analysis of JV parameters is provided. The proposed method and the conclusions of this study are supported by a series of case studies, showing the effectiveness of the proposed method on real examples.
关于钙钛矿太阳能电池(PSC)的出版物数量持续呈指数增长。尽管PSC的效率已超过25.5%,但并非每个研究实验室都能重现这一结果,甚至无法突破20%的界限。不幸的是,并不总是清楚是哪种主导机制导致了性能下降。在此,开发了一种对电流电压(JV)参数进行光强分析的简单方法,有助于了解太阳能电池中出现的、限制器件性能的机制。所开发的方法得到了漂移扩散模型的支持,旨在帮助解释钙钛矿太阳能电池中来自界面或体复合、串联电阻或并联电阻的寄生损耗。该方法不仅有助于指出器件中体复合或界面复合的主导情况,还能确定哪个界面缺陷更多。本文提供了针对此类JV参数光强分析的详细且逐步的指导。一系列案例研究支持了所提出的方法和本研究的结论,展示了该方法在实际例子中的有效性。