Wang Shurong, Wang Aili, Hao Feng
School of Materials and Energy, University of Electronic Science and Technology of China, Chengdu 611731, China.
iScience. 2021 Dec 9;25(1):103599. doi: 10.1016/j.isci.2021.103599. eCollection 2022 Jan 21.
Hybrid lead halide ABX perovskite solar cells (PSCs) have emerged as a strong competitor to the traditional solar cells with a certified power conversion efficiency beyond 25% and other remarkable features such as light weight, solution processability, and low manufacturing cost. Further development on the efficiency and stability brings forth increasing attention in the component regulation, such as partial or entire substitution of A/B/X sites by alternative elements with similar size. However, the relationships between composition, property, and performance are poorly understood. Here, the instability of PSCs from the photon-, moisture-, thermal-, and mechanical-induced degradation was first summarized and discussed. In addition, the component regulation from the A/X sites is highlighted from the aspects of band level alignment, charge-carrier dynamics, ion migration, crystallization behavior, residual strain, stoichiometry, and dimensionality control. Finally, the perspectives and future outlooks are highlighted to guide the rational design and practical application of PSCs.
混合卤化铅ABX钙钛矿太阳能电池(PSC)已成为传统太阳能电池的有力竞争对手,其认证功率转换效率超过25%,并具有其他显著特性,如重量轻、可溶液加工和制造成本低。在效率和稳定性方面的进一步发展引发了对组件调控的日益关注,例如用尺寸相似的替代元素部分或全部取代A/B/X位点。然而,人们对组成、性质和性能之间的关系了解甚少。在此,首先总结并讨论了PSC因光子、水分、热和机械诱导降解而产生的不稳定性。此外,从能带水平对齐、电荷载流子动力学、离子迁移、结晶行为、残余应变、化学计量和维度控制等方面突出了A/X位点的组件调控。最后,强调了前景和未来展望,以指导PSC的合理设计和实际应用。