Here we demonstrate an innovative compositional and interfacial engineering approach to achieve Pb-free flexible perovskite solar cells (f-PSCs) with an unprecedented combination of the highest efficiency reported to date (10.43%), together with enhanced operational stability and mechanical reliability. The key to this approach is alloying of an FASnI 3 metal halide perovskite (MHP) thin film with Ge 2+ to stabilize the Sn 2+ oxidation state in the MHP, together with the use of a NiO x hole-transport layer. We show that this results in the in situ formation of a thin amorphous GeO 2 native oxide layer at the NiO x /FASn 0.9 Ge 0.1 I 3 interface. This layer not only passivates that critical interface but also enhances the interfacial mechanical bonding.
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Chen et al. (2022) studied this question.
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