Multivalent ligands regulate dimensional engineering for inverted perovskite solar modules

  • Chang, Xiaoming; 
  • Liu, Yanping; 
  • Ping, Yue; 
  • Wu, Nan; 
  • Yang, Tinghuan; 
  • ... Woo, Han Young; 
  • 외 24명
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초록

Multivalent, resonance-stabilized amidinium ligands enable stronger chemical coordination and reduced deprotonation compared with conventional monovalent ammonium ligands in low-dimensional perovskites. Here, we introduce a controllable one- to two-dimensional (1D-to-2D) structural transition strategy by systematically tuning ligand conformation, thereby modulating hydrogen bonding, pi-pi stacking, and basicity to elucidate the relationship between molecular structure, interfacial interactions, and resulting dimensionality. The 1D-amidinium perovskite structure, with its pronounced geometric anisotropy, impedes uniform surface coverage and defect passivation. In contrast, the 2D-amidinium perovskite forms a continuous, homogeneous interfacial layer, enabling more effective defect passivation and favorable energy-level alignment. With dimensionality control, inverted 3D/2D-amidinium perovskite solar cells deliver 25.4% power conversion efficiency (1.1 square centimeters, steady-state certified) and maintain >95% of their initial efficiency after 1100 hours of continuous 1-sun operation at 85 degrees C.

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제목
Multivalent ligands regulate dimensional engineering for inverted perovskite solar modules
저자
Chang, Xiaoming; Liu, Yanping; Ping, Yue; Wu, Nan; Yang, Tinghuan; Tian, Chenqing; Ling, Zhaoheng; Vishal, Badri; Pininti, Anil Reddy; Park, Jong Bin; Jeong, Sang Young; Qin, Yan; Hui, Wing Tung; Yeung, Fion Sze Yan; Yang, Yu-Ying; Liao, Hailiang; Prasetio, Adi; Isikgor, Furkan H.; He, Mingjie; Utomo, Drajad Satrio; Wang, Rongbo; Zhao, Kui; Lanza, Mario; Woo, Han Young; Heeney, Martin; De Wolf, Stefaan; Lin, Yen-Hung; Tsetseris, Leonidas; Azmi, Randi; Anthopoulos, Thomas D.
DOI
10.1126/science.aea0656
발행일
2026-01-08
유형
Article
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Science
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391
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6781
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