Templated growth of phase-pure two-dimensional perovskite for durable solar cells
Abstract
Abstract The impure phase in typical solution-processed two-dimensional/three-dimensional (2D/3D) perovskite heterostructures limit the performance and stability of perovskite solar cells. We overcome this limitation through a templated growth strategy utilizing excess lead iodide, which directs the formation of robust phase-pure 2D perovskite at the 3D perovskite surface. This strategy effectively suppresses phase segregation and ion interdiffusion at the 2D/3D perovskite interface, while promoting favorable energy alignment for charge extraction. The resulting 2D/3D devices achieved 26.8% efficiency (26.5% certified) and improved durability, retaining over 95% of their initial performance after 3000 h of continuous operation and maintaining nearly 100% of their initial performance throughout 90 days of outdoor testing, showcasing promising real-world stability.
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Authors: Xiangnan Sun, Peng Xu, Xitao Li, Xinyu Zhao, Xinzhu Li, Jinping Zhang, Jinzhan Cheng, Wenda Shi, Zhenhu Zhang, Wei Zhang, Tianjun Liu, Wanlin Guo, Xiaoming Zhao
Institutions: Jining University, Northwestern Polytechnical University, Nanjing University of Aeronautics and Astronautics