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Organic Interlayer for Enhanced Buried Interfaces in Wide-Bandgap Perovskite Solar Cells
- Hong, Jeehee;
- Lee, Yu Kyung;
- Shin, Seoungyun;
- Whang, Dong Ryeol;
- Chang, Dong Wook;
- ... Park, Hui Joon
WEB OF SCIENCE
4SCOPUS
3초록
Achieving high performance and stability in wide-bandgap perovskite solar cells (PSCs) is essential for the development of tandem solar cells capable of surpassing the theoretical efficiency limit of single-junction photovoltaic (PV)devices. However, the performance of wide-bandgap PSCs remains challenging, primarily due to nonradiative recombination at the interfaces. An interlayer applied at the buried interface between the hole transport layer and the perovskite in a p-i-n architecture can play a pivotal role, as it is critical for efficient charge transport, extraction, and the formation of high-quality perovskite films. In this work, a donor–acceptor architectural quinoxaline-based organic interlayer specifically designed for the interface between NiOx and wide-bandgap perovskite is introduced. The incorporation of this interlayer effectively passivates defects at the perovskite interface, leading to improved charge carrier extraction and a substantial reduction in nonradiative recombination, while also enhancing the overall quality of the perovskite film. Moreover, the high dipole moment of QxNN increases the built-in potential of the device, further contributing to enhanced charge extraction. Notably, PSCs incorporating the organic interlayer exhibit a remarkable increase in power conversion efficiency, from 17.5% to 20.0%, while maintaining their performance over 500-h under ambient conditions.
키워드
- 제목
- Organic Interlayer for Enhanced Buried Interfaces in Wide-Bandgap Perovskite Solar Cells
- 저자
- Hong, Jeehee; Lee, Yu Kyung; Shin, Seoungyun; Whang, Dong Ryeol; Chang, Dong Wook; Park, Hui Joon
- 발행일
- 2025-08
- 유형
- Article
- 저널명
- ChemSusChem
- 권
- 18
- 호
- 16
- 페이지
- 1 ~ 9