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2D Perovskite Engineering Enables Robust Self‐Assembled Monolayers for High‐Performance Perovskite Solar Cells

2026-06-02 · Advanced Materials

One-line summary

A solar energy research paper on 2D Perovskite Engineering Enables Robust Self‐Assembled Monolayers for High‐Performance Perovskite Solar Cells.

Engineering notes

Engineering notes will be added by the Power for Solar editorial team.

Chinese explanation / 中文解读

中文解读待补充:本站会优先为光伏效率、钙钛矿太阳能电池、储能技术、太阳能热利用、BIPV、并网技术等高价值论文补充中文说明。

Original abstract

ABSTRACT Self‐assembled monolayers (SAMs) are critical hole‐selective contacts in inverted perovskite solar cells (PSCs), yet their practical implementation is hindered by desorption and aggregation during solution‐based perovskite deposition. Here, we report a transient two‐dimensional (2D) perovskite protection strategy using volatile propylammonium chloride, which temporarily shields SAMs from solvent‐induced degradation and subsequently decouples during thermal annealing. This mechanism preserves the integrity of the SAM interface while enabling uniform crystallization of large‐area perovskite films and efficient charge extraction. Consequently, PSCs achieve a power conversion efficiency (PCE) of 26.14% for 0.05 cm 2 devices, 23.27% for a 5 × 5 cm 2 mini‐module, and 22.34% for a 30 × 30 cm 2 module (615.7 cm 2 active area). Notably, the large‐area module retains 90% of its initial efficiency after 2000 h of continuous maximum power point operation, demonstrating both high performance and operational stability, highlighting a scalable route for reliable perovskite photovoltaics.

5.0Engineering value
7.0Research novelty
4.0Business relevance

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