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Flexible Cu_(2)AgBiI_(6)-based perovskite-inspired solar cells using large-scale processing methods
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作者 Ville Holappa G.Krishnamurthy Grandhi +3 位作者 Noora Lamminen Riikka Suhonen Thomas M.Kraft Paola Vivo 《npj Flexible Electronics》 2025年第1期386-412,共27页
In this work,emerging perovskite-inspired Cu_(2)AgBiI_(6)(CABI)solar cells were successfully fabricated on flexible substrates,demonstrating that the transition from rigid to flexible materials does not compromise dev... In this work,emerging perovskite-inspired Cu_(2)AgBiI_(6)(CABI)solar cells were successfully fabricated on flexible substrates,demonstrating that the transition from rigid to flexible materials does not compromise device performance.This underscores the versatility of CABI on two different kinds of sub strates.Additionally,t o optimize charge extraction,we selected a polymeric hole-transport material(HTM),PPDT2FBT,whose energy levels align with CABI.The PPDT2FBT-based devices outperformed those using the well-known poly(3-hexylthiophene)(P3HT),le ading to power conversion efficiencies as high as approximately 0.8%.These results suggest that PPDT2FBT may hold promise as a HTM for use in low-toxicity,perovskite-inspired photovoltaic systems,such as those based on CABI.Furthermore,roll-to-roll p rocessing techniques,crucial for scalable production,were tested.However,controlling the morphology of the active layer remains a significant challenge.These findings represent critical steps toward the large-scale manufacturing and commercialization of flexible,PIM-based solar cells. 展开更多
关键词 flexible substratesdemonstrating flexible substrates roll roll processing polymeric hole transport material ppdt FBT power conversion efficiency Cu AgBiI p ht
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