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◆ ACS applied materials & interfaces2026-09-15

A Scalable Surface Passivation Technology for Large-Area Perovskite Solar Cells and Modules.

Weile Li, Yao Wang, Qian Chen, Ni Su, Pengxiang Wang, Nuo Cheng, Mengen Ma, Cuiling Zhang, Shangfei Yao, Cong Liu, Chong Liu

原始摘要(英文原文)· Original abstract
Solid-phase passivation offers greater potential for enhancing the device performance of large-area perovskite solar cells (PSCs). Unlike their solution-processed counterparts, solid-phase passivation is readily scalable to commercialized size, exhibits reduced solvent dependence, and permits a broader selection of passivating agents. Here, we develop a laminator-assisted solid-phase surface passivation strategy for large-area devices. The passivator, 1-naphthylmethylamine iodide (NMAI), effectively passivates surface Pb2+ and I- defects, substantially suppressing nonradiative carrier recombination. As a result, the open-circuit voltage (VOC) is increased from 1.10 to 1.18 V, and the power conversion efficiency (PCE) of the PSCs is improved from 23.05 to 25.27% with the solid-phase passivation of NMAI. The optimized PSCs also exhibited remarkable stability, with the encapsulated PSCs retaining 89% of their initial efficiency after 900 h of storage under harsh conditions (85 °C and 85% RH). Furthermore, a perovskite solar module with an aperture area of 21 cm2 achieves a PCE of 21.44%. This work demonstrates that the solid-phase passivation strategy offers a scalable and solvent-independent route toward commercial photovoltaic modules.
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A Scalable Surface Passivation Technology for Large-Area Perovskite Solar Cells and Modules. — 科研速览 Science Skim