Zhang Yu, Zhao Bin, Liu Lang, Zhou Jianheng, Ma Xue, Wang Ning
College of Physics, Jilin University, Changchun, 130012, P. R. China.
Small. 2024 Feb;20(6):e2306115. doi: 10.1002/smll.202306115. Epub 2023 Sep 29.
The unsatisfactory power conversion efficiency (PCE) and long-term stability of tin perovskite solar cells (TPSCs) restrict its further development as alternatives to lead perovskite solar cells (LPSCs). Considerable research has focused on the negative impacts of O and H O, while discussions about degradation mechanism in an inert atmosphere remains insufficient. Herein, the light-induced autoxidation of tin perovskite in nitrogen atmosphere is revealed for the first time and the elastic lattice distortion is demonstrated as the crucial role of rapid degradation. The continuous injection of photons induces energy transfer from excited A-site cations to vibrating Sn-I framework, leading to the elastic deformation of perovskite lattice. Consequently, the over distorted Sn-I framework releases free iodine and further oxidizes Sn in the form of molecular iodine. Through an appropriately designed light-dark cyclic test, a remarkable PCE of 14.41% is achieved based on (Cs (MA FA ) ) EDA SnI solar cells, which is the record of hybrid triple TPSCs so far. The findings unveil autoxidation as the crux of TPSCs' degradation in an inert atmosphere and suggest the possibility of reinforcing the tin perovskite lattice towards highly efficient and stable TPSCs.
锡基钙钛矿太阳能电池(TPSCs)不尽人意的功率转换效率(PCE)和长期稳定性限制了其作为铅基钙钛矿太阳能电池(LPSCs)替代品的进一步发展。大量研究聚焦于氧和水的负面影响,而关于惰性气氛中降解机制的讨论仍不充分。在此,首次揭示了氮气气氛中锡基钙钛矿的光致自氧化现象,并证明弹性晶格畸变是快速降解的关键因素。光子的持续注入促使能量从激发态的A位阳离子转移至振动的Sn-I骨架,导致钙钛矿晶格发生弹性形变。因此,过度畸变的Sn-I骨架释放出游离碘,并以分子碘的形式进一步氧化锡。通过适当设计的光暗循环测试,基于(Cs(MA FA)) EDA SnI太阳能电池实现了14.41%的卓越PCE,这是目前混合三元TPSCs的最高纪录。这些发现揭示了自氧化是TPSCs在惰性气氛中降解的关键,并为强化锡基钙钛矿晶格以实现高效稳定的TPSCs提供了可能性。