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A Multifunctional Polymer as an Interfacial Layer for Efficient and Stable Perovskite Solar Cells.

Bingqian ZhangChen ChenXianzhao WangXiaofan DuDachang LiuXiuhong SunZhipeng LiLianzheng HaoCaiyun GaoYimeng LiZhipeng ShaoXiao WangGuanglei CuiShuping Pang
Published in: Angewandte Chemie (International ed. in English) (2022)
Metal-cation defects and halogen-anion defects in perovskite films are critical to the efficiency and stability of perovskite solar cells (PSCs). In this work, a random polymer, poly(methyl methacrylate-co-acrylamide) (PMMA-AM), was synthesized to serve as an interfacial passivation layer for synergistically passivating the under-coordinated Pb 2+ and anchor the I - of the [PbI 6 ] 4- octahedron. Additionally, the interfacial PMMA-AM passivation layer cannot be destroyed during the hole transport layer deposition because of its low solubility in chlorobenzene. This passivation leads to an enhancement in the open-circuit voltage from 1.12 to 1.22 V and improved stability in solar cell devices, with the device maintaining 95 % of the initial power conversion efficiency (PCE) over 1000 h of maximum power point tracking. Additionally, a large-area solar cell module was fabricated using this approach, achieving a PCE of 20.64 %.
Keyphrases
  • perovskite solar cells
  • single cell
  • cell therapy
  • ionic liquid
  • room temperature
  • drug delivery
  • heavy metals
  • mesenchymal stem cells
  • water soluble