材料科学
钙钛矿(结构)
兴奋剂
能量转换效率
纳米棒
载流子
光电子学
载流子寿命
波段图
异质结
纳米技术
化学工程
硅
工程类
作者
Wenhan Yang,Junmin Xia,Yuexin Lin,Hao Gu,Fengqiang Ma,Yumin Ren,Fenqi Du,Dejian Yu,Jin‐Feng Liao,Yiwang Chen,Guojia Fang,Shengchun Yang,Chao Liang
标识
DOI:10.1016/j.scib.2024.06.029
摘要
Deep-level traps at the buried interface of perovskite and energy mismatch problems between the perovskite layer and heterogeneous interfaces restrict the development of ideal homogenized films and efficient perovskite solar cells using the one-step spin-coating method. Here, we strategically employed sparingly soluble germanium iodide as a homogenized bulk in-situ reconstruction inducing material preferentially aggregated at the perovskite buried interface with gradient doping, markedly reducing deep-level traps and withstanding local lattice strain, while minimizing non-radiative recombination losses and enhancing the charge carrier lifetime over 9 µs. Furthermore, this gradient doping assisted in modifying the band diagram at the buried interface into a desirable flattened alignment, substantially mitigating the energy loss of charge carriers within perovskite films and improving the carrier extraction equilibrium. As a result, the optimized device achieved a champion power conversion efficiency of 25.24% with a fill factor of up to 84.65%, and the unencapsulated device also demonstrated excellent light stability and humidity stability. This work provides a straightforward and reliable homogenization strategy of perovskite components for obtaining efficient and stable perovskite solar cells.
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