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Quantum-size-tuned heterostructures enable efficient and stable inverted perovskite solar cells

  • Hao Chen
  • , Sam Teale
  • , Bin Chen
  • , Yi Hou
  • , Luke Grater
  • , Tong Zhu
  • , Koen Bertens
  • , So Min Park
  • , Harindi R. Atapattu
  • , Yajun Gao
  • , Mingyang Wei
  • , Andrew K. Johnston
  • , Qilin Zhou
  • , Kaimin Xu
  • , Danni Yu
  • , Congcong Han
  • , Teng Cui
  • , Eui Hyuk Jung
  • , Chun Zhou
  • , Wenjia Zhou
  • Andrew H. Proppe, Sjoerd Hoogland, Frédéric Laquai, Tobin Filleter, Kenneth R. Graham, Zhijun Ning*, Edward H. Sargent*
*此作品的通讯作者
  • University of Toronto
  • ShanghaiTech University
  • National University of Singapore
  • University of Kentucky
  • King Abdullah University of Science and Technology

科研成果: 期刊稿件文章同行评审

摘要

The energy landscape of reduced-dimensional perovskites (RDPs) can be tailored by adjusting their layer width (n). Recently, two/three-dimensional (2D/3D) heterostructures containing n = 1 and 2 RDPs have produced perovskite solar cells (PSCs) with >25% power conversion efficiency (PCE). Unfortunately, this method does not translate to inverted PSCs due to electron blocking at the 2D/3D interface. Here we report a method to increase the layer width of RDPs in 2D/3D heterostructures to address this problem. We discover that bulkier organics form 2D heterostructures more slowly, resulting in wider RDPs; and that small modifications to ligand design induce preferential growth of n ≥ 3 RDPs. Leveraging these insights, we developed efficient inverted PSCs (with a certified quasi-steady-state PCE of 23.91%). Unencapsulated devices operate at room temperature and around 50% relative humidity for over 1,000 h without loss of PCE; and, when subjected to ISOS-L3 accelerated ageing, encapsulated devices retain 92% of initial PCE after 500 h.

源语言英语
页(从-至)352-358
页数7
期刊Nature Photonics
16
5
DOI
出版状态已出版 - 5月 2022
已对外发布

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