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Multidentate Phosphine Oxide Ligands for Regulating Surface Coordination and Electronic Coupling in CsPbI Quantum Dot Solar Cells
- Luo, Jie;
- Huang, Hehe;
- Kweon, Seong Hyeon;
- Ha, Jung Min;
- Li, Huifeng;
- ... Woo, Han Young;
- 외 8명
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1초록
All-inorganic CsPbI3 perovskite quantum dots (PQDs) suffer from a long-standing trade-off between effective surface passivation and efficient interdot charge transport. Here, we identify ligand denticity as a key parameter governing this balance using mono-, bi-, and tetradentate phosphine oxide ligands. Increasing denticity strengthens surface coordination and suppresses defect-assisted recombination but simultaneously introduces steric constraints that weaken interdot electronic coupling. Density functional theory calculations reveal that the bidentate ligand 2-TPPO preferentially adopts an energetically favorable bridging configuration between adjacent PQDs, enabling both strong surface binding and efficient carrier transport. Consistent with this mechanism, 2-TPPO-treated PQD solids exhibit reduced trap density and improved structural ordering. Consequently, CsPbI3 PQD solar cells achieve an efficiency of 17.1% with enhanced operational stability. These findings establish ligand denticity as a molecular design principle for balancing defect passivation and electronic coupling in PQD solids.
키워드
- 제목
- Multidentate Phosphine Oxide Ligands for Regulating Surface Coordination and Electronic Coupling in CsPbI Quantum Dot Solar Cells
- 저자
- Luo, Jie; Huang, Hehe; Kweon, Seong Hyeon; Ha, Jung Min; Li, Huifeng; Li, Du; Kong, Yuxin; Zhao, Xinyu; Zhang, Xuliang; Lang, Guohao; Shin, Jae Kwon; Kwak, Sang Kyu; Woo, Han Young; Yuan, Jianyu
- 발행일
- 2026-08-14
- 유형
- Article
- 권
- 11
- 호
- 8
- 페이지
- 5940 ~ 5947