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Lithium-Ion Endohedral Fullerene (Li+ @C60 ) Dopants in Stable Perovskite Solar Cells Induce Instant Doping and Anti-Oxidation.

Il JeonHiroshi UenoSeungju SeoKerttu AitolaRyosuke NishikuboAkinori SaekiHiroshi OkadaGerrit BoschlooShigeo MaruyamaYutaka Matsuo
Published in: Angewandte Chemie (International ed. in English) (2018)
Herein, we report use of [Li+ @C60 ]TFSI- as a dopant for spiro-MeOTAD in lead halide perovskite solar cells. This approach gave an air stability nearly 10-fold that of conventional devices using Li+ TFSI- . Such high stability is attributed to the hydrophobic nature of [Li+ @C60 ]TFSI- repelling moisture and absorbing intruding oxygen, thereby protecting the perovskite device from degradation. Furthermore, [Li+ @C60 ]TFSI- could oxidize spiro-MeOTAD without the need for oxygen. The encapsulated devices exhibited outstanding air stability for more than 1000 h while illuminated under ambient conditions.
Keyphrases
  • perovskite solar cells
  • ion batteries
  • solid state
  • air pollution
  • particulate matter
  • nitric oxide
  • room temperature
  • hydrogen peroxide
  • high efficiency