4.8 Article

High efficiency planar-type perovskite solar cells with negligible hysteresis using EDTA-complexed SnO2

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NATURE COMMUNICATIONS
卷 9, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-018-05760-x

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资金

  1. National Key Research Program of China [2016YFA0202403]
  2. National Natural Science Foundation of China [61604090/91733301]
  3. Institute of Critical Technology and Applied Science (ICTAS)
  4. Shaanxi Technical Innovation Guidance Project [2018HJCG-17]
  5. Air Force Office of Scientific Research
  6. National University Research Fund [GK261001009]
  7. Innovative Research Team [IRT_14R33]
  8. 111 Project [B14041]
  9. Chinese National 1000-Talent-Plan program

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Even though the mesoporous-type perovskite solar cell (PSC) is known for high efficiency, its planar-type counterpart exhibits lower efficiency and hysteretic response. Herein, we report success in suppressing hysteresis and record efficiency for planar-type devices using EDTA-complexed tin oxide (SnO2) electron-transport layer. The Fermi level of EDTA-complexed SnO2 is better matched with the conduction band of perovskite, leading to high open-circuit voltage. Its electron mobility is about three times larger than that of the SnO2. The record power conversion efficiency of planar-type PSCs with EDTA-complexed SnO2 increases to 21.60% (certified at 21.52% by Newport) with negligible hysteresis. Meanwhile, the low-temperature processed EDTA-complexed SnO2 enables 18.28% efficiency for a flexible device. Moreover, the unsealed PSCs with EDTA-complexed SnO2 degrade only by 8% exposed in an ambient atmosphere after 2880 h, and only by 14% after 120 h under irradiation at 100 mW cm(-2).

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