ABSTRACT Despite the inherent chemical stability of CsPbI 3 , its metastable black phase tends to transform into the non‐photovoltaic yellow phase, particularly under thermal stress. One key reason lies in the Cs + displacement among PbI 6 4− octahedras due to its small size, thus inducing PbI 6 4− tilting and CsPbI 3 phase transition. Here, we propose a bidirectional anchoring strategy with 1‐Methyl‐3‐(3‐sulfopropyl)‐1H‐imidazol‐3‐ium chloride (SMCl) introduction. The sulfonate group in SMCl can strongly interact with Cs + to inhibit its displacement, and the imidazole group can coordinate with PbI 6 4− to inhibit its tilting, thus stabilizing black CsPbI 3 . Besides, the simultaneous anchoring with Cs + and PbI 6 4− can also introduce a compressive strain in CsPbI 3 film with SMCl, further increasing its phase stability. Resulting inverted PSCs exhibit high efficiency of 21.17% with good operational stability even under ISOS‐L‐2 protocol, retaining 85% of their initial efficiency after continuous maximum power point tracking for 1000 h with continuous illumination at 65°C.
Guo et al. (Sat,) studied this question.
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