Solvent-Regulated Surface Passivation for Efficient and Stable Inverted Perovskite Solar Cells

Phenethylammonium iodide (PEAI) is widely used to passivate undercoordinated ionic defects and regulate the near-surface structure of inverted perovskite solar cells; however, the solvent used for PEAI deposition can also interact with the underlying perovskite and therefore determine the treatment outcome. Here, ethanol (EtOH), isopropanol (IPA), and n-butanol (n-BuOH) were compared as aliphatic alcohol solvents for the PEAI post-treatment of inverted p–i–n solar cells based on a mixed-cation, mixed-halide Cs0.05(FA0.95MA0.05)0.95Pb(I0.95Br0.05)3 absorber. EtOH caused pronounced surface disturbance and substantially reduced device performance. IPA afforded the highest initial power conversion efficiency (PCE) of 21.92% but was accompanied by a stronger PbI2 diffraction signal. In contrast, n-BuOH provided a milder treatment, producing a comparable PCE of 21.83%, a weaker PbI2 signal, and the highest water contact angle. After dark storage in air at 25 °C and 25% relative humidity for 168 h, the unencapsulated n-BuOH-treated devices retained 82% of their initial PCE, compared with 77% for the Control. These results demonstrate that the PEAI processing solvent is an active component that governs the balance among defect passivation, surface reconstruction, initial efficiency, and short-term storage stability.

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Publication Details

Journal
Nanomaterials
Published
2026-09-21
DOI
https://doi.org/10.3390/nano16181189
Primary Topic
Perovskite Materials and Applications
Type
article
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Solvent-Regulated Surface Passivation for Efficient and Stable Inverted Perovskite Solar Cells

Boyuan Li, Yongqi Yin, Jiaqi Du, Jiang Yu et al.
Nanomaterials
Perovskite Materials and Applications
article

Solvent-Regulated Surface Passivation for Efficient and Stable Inverted Perovskite Solar Cells

Boyuan Li, Yongqi Yin, Jiaqi Du, Jiang Yu, Jiawei Wang
article en

Abstract

Phenethylammonium iodide (PEAI) is widely used to passivate undercoordinated ionic defects and regulate the near-surface structure of inverted perovskite solar cells; however, the solvent used for PEAI deposition can also interact with the underlying perovskite and therefore determine the treatment outcome. Here, ethanol (EtOH), isopropanol (IPA), and n-butanol (n-BuOH) were compared as aliphatic alcohol solvents for the PEAI post-treatment of inverted p–i–n solar cells based on a mixed-cation, mixed-halide Cs0.05(FA0.95MA0.05)0.95Pb(I0.95Br0.05)3 absorber. EtOH caused pronounced surface disturbance and substantially reduced device performance. IPA afforded the highest initial power conversion efficiency (PCE) of 21.92% but was accompanied by a stronger PbI2 diffraction signal. In contrast, n-BuOH provided a milder treatment, producing a comparable PCE of 21.83%, a weaker PbI2 signal, and the highest water contact angle. After dark storage in air at 25 °C and 25% relative humidity for 168 h, the unencapsulated n-BuOH-treated devices retained 82% of their initial PCE, compared with 77% for the Control. These results demonstrate that the PEAI processing solvent is an active component that governs the balance among defect passivation, surface reconstruction, initial efficiency, and short-term storage stability.

NanomaterialsVol. 16(18)
Harbin Normal University (CN), Nagoya University (JP)
Clean water and sanitation
Openalex Percentile: Top 21%
Perovskite Materials and Applications
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Solvent-Regulated Surface Passivation for Efficient and Stable Inverted Perovskite Solar Cells — Boyuan Li, Yongqi Yin, et al. · Nanomaterials (2026) | TGRS Research Map | TGRS