Abstract
Pb–Sn mixed perovskites with an optimal bandgap of ∼1.25 eV are essential for high-efficiency all-perovskite tandem solar cells. However, the facile oxidation of Sn2+ leads to detrimental Sn4+ defects that cause severe nonradiative recombination and rapid degradation, hindering their commercialization. Here, we demonstrate a halide exchange strategy using inert metal chlorides (MnCl2/ZnCl2) to simultaneously reduce the Sn4+ concentration and form an inorganic protective layer in Pb–Sn perovskite solar cells (PSCs). The metal chlorides react with SnI4 via ligand substitution, producing volatile SnCl4, which reduces Sn4+ concentrations, while forming MnI2/ZnI2 passivation layers at the grain boundaries. In addition, the post-treatment induces partial dissolution-recrystallization, which enlarges the grain size and reduces residual stress. Furthermore, the inorganic passivation layer optimizes the energy-level alignment at the perovskite surface, facilitating carrier separation and extraction. As a result, the champion ZnCl2-modified device achieves a high power conversion efficiency (PCE) of 23.06% with an open-circuit voltage of 0.87 V and retains 90% of its initial PCE after 1000 h of continuous illumination in N2. This work establishes a novel inert metal chloride post-treatment strategy and elucidates the underlying reaction mechanisms in Pb–Sn mixed perovskites, thereby opening new avenues for developing highly efficient and stable tandem devices.
| Original language | English |
|---|---|
| Pages (from-to) | 19180-19190 |
| Number of pages | 11 |
| Journal | ACS Nano |
| Volume | 20 |
| Issue number | 27 |
| DOIs | |
| State | Published - 14 Jul 2026 |
Keywords
- All-perovskite tandem
- halide exchange
- Inorganic passivation layer
- Pb−Sn perovskite
- Snelimination
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