Zhang Xiang, Zhang Dan, Wang Zaiwei, Zhao Yixin, Chen Hao
Future Photovoltaics Research Center, Global Institute of Future Technology (GIFT), Shanghai Jiao Tong University, Shanghai, 200240, China.
Institute of Technology for Carbon Neutrality, Shenzhen Institute of Advanced Technology, Chinese Academy of Sciences, Shenzhen, 518055, China.
Adv Mater. 2025 Jul;37(29):e2505543. doi: 10.1002/adma.202505543. Epub 2025 May 12.
All-inorganic tin (Sn)-containing perovskites have emerged as highly promising photovoltaic materials for single-junction and tandem perovskite solar cells (PSCs), owing to their reduced toxicity, optimal narrow bandgap, and superior thermal stability. Since their initial exploration in 2012, significant advancements have been achieved, with the highest efficiencies of single-junction and tandem devices now surpassing 17% and 22%, respectively. Nevertheless, the intrinsic challenges associated with the oxidation susceptibility of Sn and the uncontrolled crystallization dynamics impede their further development. Addressing these issues necessitates a comprehensive and systematic understanding of the degradation mechanisms inherent to all-inorganic Sn-containing perovskites, as well as the development of effective mitigation strategies. This review provides a detailed overview of the research progress in all-inorganic Sn-containing PSCs, with a particular focus on the basic properties and degradation pathways of both pristine Sn and mixed Sn-Pb perovskites. Furthermore, various strategies to improve the efficiency and stability of Sn-containing PSCs are thoroughly discussed. Finally, the existing challenges and perspectives are provided for further improving the photovoltaic performance of eco-friendly PSCs.
全无机含锡(Sn)钙钛矿因其毒性降低、最佳窄带隙和卓越的热稳定性,已成为单结和串联钙钛矿太阳能电池(PSC)极具前景的光伏材料。自2012年首次探索以来,已取得了重大进展,目前单结和串联器件的最高效率分别超过了17%和22%。然而,与Sn的氧化敏感性和不受控制的结晶动力学相关的内在挑战阻碍了它们的进一步发展。解决这些问题需要全面系统地了解全无机含Sn钙钛矿固有的降解机制,以及制定有效的缓解策略。本综述详细概述了全无机含Sn PSC的研究进展,特别关注原始Sn和混合Sn-Pb钙钛矿的基本性质和降解途径。此外,还深入讨论了提高含Sn PSC效率和稳定性的各种策略。最后,针对进一步提高环保型PSC的光伏性能,给出了现存挑战和展望。