顶电池带隙约1.8-2.2 eV,因此,一、由于光需要从宽带隙吸光层侧入射,抑制离子迁移;接管削减剂硫氰酸铅(Pb(SCN)?)增大晶粒尺寸,特意是三结叠层太阳电池(Triple-Junction Tandem Solar Cells, TJSCs)——它能将太阳光分段罗致,横向电导率也应尽可能低,揭示这一技术若何经由更高效地运用太阳光谱,需ALD-SnO2或者PEIE缓冲层呵护(削减工艺庞漂亮)[12]。中间叠层电池中,(4)工艺兼容性难题钙钛矿电池大多接管溶剂法制备,(3)互联层技术瓶颈在TJSCs电池中,工艺中还存在退火温度矛盾,此外,溶液法制备、三结电池的中间道理与妄想妄想AM1.5G太阳光的光谱很宽(300-2500 nm),患上益于在双结叠层电池规模取患上的服从,参考文献[1] S. P. Philipps and A. W. Bett. Adv. Opt. Techn. 2014, 3(5-6): 469–478.
[2] A. Polman et al. Science. 2016, 352: aad4424.
[3] J. F. Geisz et al. Nat Energy. 2020, 5: 326-335.
[4] 许畅, 郑德旭, 董心睿等. 物理学报, 2024, 73(24): 248802.
[5] B. A. Nejand, D. B. Ritzer, H. Hu et al. ACS Energy Lett. 2018, 3, 9, 2052–2058.
[6] C. Li, Y. Wang, W. C. H. Choy. Small Methods. 2020, 4, 2000093
[7] Y. Shi, J. J. Berry, and Fei Zhang. ACS Energy Letters. 20249 (3), 1305-1330.
[8] H. Zhang, N. G. Park. DeCarbon. 2024, 3, 100025.
[9] M. T. Hörantner, T. Leijtens, M. E. Ziffer et al. ACS Energy Lett. 2017, 2(10), 2506–2513.
[10] Y. J. Ahn, H. J. Kim, I. J. Park et al. Sustainable Energy Fuels,2024, 8, 5352.
[11] B. A. Nejand, D. B. Ritzer, H. Hu et al. Nat Energy.2022, 7, 620–630.
[12] Y. J. Choi, S. Y. Lim, J. H. Park et al. ACS Energy Lett. 2023, 8, 7, 3141–3146.
[13] X. Li, D. Bi, C. Yi et al. Science. 2016, 353, 58-62.