Huang Lishuai, Cui Hongsen, Zhang Wenjun, Pu Dexin, Zeng Guojun, Liu Yongjie, Zhou Shun, Wang Chen, Zhou Jin, Wang Cheng, Guan Hongling, Shen Weicheng, Li Guang, Wang Ti, Zheng Wenwen, Fang Guojia, Ke Weijun
Key Lab of Artificial Micro- and Nano-Structures of Ministry of Education, School of Physics and Technology, Wuhan University, Wuhan, 430072, China.
Hubei Key Laboratory of Optical Information and Pattern Recognition, School of Optical Information and Energy Engineering, Wuhan Institute of Technology, Wuhan, 430205, China.
Adv Mater. 2023 Aug;35(32):e2301125. doi: 10.1002/adma.202301125. Epub 2023 Jul 2.
Narrow-bandgap (NBG) mixed tin/lead-based (Sn-Pb) perovskite solar cells (PSCs) have attracted extensive attention for use in tandem solar cells. However, they are still plagued by serious carrier recombination due to inferior film properties resulting from the alloying of Sn with Pb elements, which leads to p-type self-doping behaviors. This work reports an effective tin oxide (SnO ) doping strategy to produce high-quality Sn-Pb perovskite films for utilization in efficient single-junction and tandem PSCs. SnO can be naturally oxidized from tin diiodide raw powders and successfully incorporated into Sn-Pb perovskite films. Consequently, Sn-Pb perovskite films doped with SnO exhibit dramatically improved morphology, crystallization, absorption, and more interestingly, upward-shifted Fermi levels. The resulting narrow-bandgap Sn-Pb PSCs with natural SnO doping have considerably reduced carrier recombination, therefore delivering a maximum power conversion efficiency (PCE) of 22.16% for single-junction cells and a remarkable PCE of 26.01% (with a steady-state efficiency of 25.33%) for two-terminal all-perovskite tandem cells. This work introduces a facile doping strategy for the manufacture of efficient single-junction narrow-bandgap PSCs and their tandem solar cells.
窄带隙(NBG)混合锡/铅基(Sn-Pb)钙钛矿太阳能电池(PSC)在串联太阳能电池中的应用引起了广泛关注。然而,由于Sn与Pb元素合金化导致薄膜性能较差,它们仍然受到严重的载流子复合问题困扰,这会导致p型自掺杂行为。这项工作报道了一种有效的氧化锡(SnO)掺杂策略,用于制备高质量的Sn-Pb钙钛矿薄膜,以用于高效单结和串联PSC。SnO可以从二碘化锡原料粉末自然氧化,并成功掺入Sn-Pb钙钛矿薄膜中。因此,掺杂SnO的Sn-Pb钙钛矿薄膜表现出显著改善的形貌、结晶度、吸收率,更有趣的是,费米能级上移。由此得到的具有自然SnO掺杂的窄带隙Sn-Pb PSC的载流子复合大大减少,因此单结电池的最大功率转换效率(PCE)达到22.16%,两终端全钙钛矿串联电池的PCE显著达到26.01%(稳态效率为25.33%)。这项工作为制造高效单结窄带隙PSC及其串联太阳能电池引入了一种简便的掺杂策略。