Buried organic interlayer for high-performance and stable wide-bandgap perovskite solar cells

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초록

The development of wide-bandgap perovskite solar cells (PSCs) is essential for advancing tandem solar cell technologies that exceed the Shockley-Queisser limit. In this study, two novel pyrazino[2,3-g]quinoxaline (PQ)based organic interlayers, PQ-H-H and PQ-H-F, were strategically designed and integrated at the interface between NiOx hole transport layer and the wide-bandgap perovskite layer. This incorporation aimed to improve the built-in potential of PSC through deeper highest occupied molecular orbital level and strong dipole moment of interlayer and enhance perovskite film quality through the passivation of defects and the formation of larger grains with higher crystallinity. The PSC devices incorporating PQ-H-F interlayer demonstrated the most pronounced improvement, achieving power conversion efficiency increase from 17.5 % to 20.1 %. Additionally, the incorporation of PQ-H-F effectively mitigated hysteresis and significantly improved long-term stability, retaining 90 % of the initial PCE after 500 h under ambient conditions. These results highlight the potential of PQ-based organic interlayers as a robust strategy to enhance both the performance and durability of wide-bandgap PSCs, thereby offering a pathway toward the realization of high-efficiency tandem solar cells.

키워드

Perovskite solar cellWide-bandgapDefect-passivationOrganic hole transport materialInterlayerHOLE-TRANSPORTING MATERIALLOW-COSTEFFICIENCYSTABILITYPASSIVATIONLAYER
제목
Buried organic interlayer for high-performance and stable wide-bandgap perovskite solar cells
저자
Kim, HaeunLee, Soo YeonPark, HansolHeo, JihyeonKim, HakjunKim, YoonsungPrayogo, Juan AnthonyKim, Young-HoonWhang, Dong RyeolChang, Dong WookPark, Hui Joon
DOI
10.1016/j.cej.2025.161323
발행일
2025-04
유형
Article
저널명
Chemical Engineering Journal
509
페이지
1 ~ 11