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Coordinated Optical Matching of a Texture Interface Made from Demixing Blended Polymers for High Performance Inverted Perovskite Solar Cells

DOI:10.1021/acsnano.9b07594 期刊:ACS Nano 出版年份:2019 更新时间:2025-09-11 14:15:04
摘要: The continuing increase of the efficiency of perovskite solar cells has pushed the internal quantum efficiency approaching 100%, which means the light-to-carrier and then the following carrier transportation and extraction are no longer limiting factors in photoelectric conversion efficiency of perovskite solar cells. However, the optimal efficiency is still far lower than the Shockley–Queisser efficiency limit, especially for those inverted perovskite solar cells, indicating significant fraction of light do not transmit into the active perovskite layer to be absorbed there. Here a planar inverted perovskite solar cell (ITO/PTAA/perovskite/PC61BM/bathocuproine (BCP)/Ag) is chosen as an example and we show that the external quantum efficiency (EQE) of it can be significantly improved by simply texturing the Poly [bis (4-phenyl)(2,4,6-trimethylphenyl)amine] (PTAA) layer. By washing the film prepared from mixed polymer solution of PTAA and Polystyrene (PS), a textured PTAA/perovskite interface is introduced on the light-input side of perovskite to inhibit internal optical reflection. The reduction of optical loss by this simple texture method increases the EQE and then the photocurrent of ITO/PTAA/perovskite/PC61BM/BCP/Ag device with the magnitude about 10%. At the same time, this textured PTAA benefits the band edge absorption in this planar solar cell. The large increase of the short-circuit current together with the increase of fill factor pushes the efficiency of this inverted perovskite solar cell from 18.3% up to an efficiency over 20.8%. By using anti-reflection coating on glass to let more light into the device, the efficiency is further improved to 21.6%, further demonstrating the importance of light management in perovskite solar cells.
作者: Cun Yun Xu,Wei Hu,Gang Wang,Lianbin Niu,Ahmed Mourtada Elseman,Liping Liao,Yanqing Yao,Gaobo Xu,Lie Luo,Debei Liu,Guangdong Zhou,Ping Li,Qunliang Song
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Investigating the effect of texturing the PTAA layer on the efficiency of inverted perovskite solar cells to reduce internal optical reflection and improve light absorption.

Texturing the PTAA layer significantly reduces internal optical reflection, leading to a substantial improvement in the EQE and overall efficiency of inverted perovskite solar cells. The method is simple and cost-effective, offering a viable approach to enhance light management in perovskite solar cells.

The study focuses on a specific device architecture (ITO/PTAA/perovskite/PC61BM/BCP/Ag) and may not be directly applicable to other configurations. The texture method's effectiveness may vary with different materials or layer thicknesses.

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