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Reactive reconstruction and embedded passivation of heterointerfaces for intrinsically stable perovskite photovoltaics

2026-06-05 · Science Advances

One-line summary

A solar energy research paper on Reactive reconstruction and embedded passivation of heterointerfaces for intrinsically stable perovskite photovoltaics.

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

Heterointerface degradation under operational stress represents a critical limitation to perovskite solar cell longevity. Here, we demonstrate contrasting aging behaviors between bulky anionic and cationic passivators at heterointerfaces, wherein anionic species induce lattice expansion under thermal stress. To address the thermal instability of conventional passivators, we synthesized cesium pyridine-3-carboxylate, which triggers reactive surface reconstruction, suppresses ion migration, and enhances interfacial charge transfer. Devices using this passivation strategy achieved certified power conversion efficiencies of 27.28% with exceptional operational stability. Unencapsulated devices retained 87% of their initial efficiency after 4092 hours of maximum power point tracking under the ISOS-L-1 protocol, while encapsulated devices maintained 80% of their initial efficiency after 3566 hours at 85°C under the ISOS-L-2 protocol. These findings establish rational design principles for stabilizing perovskite heterointerfaces and advancing device durability.

5.0Engineering value
7.0Research novelty
4.0Business relevance

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