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Poly(ethylene glycol)-[60]Fullerene-Based Materials for Perovskite Solar Cells with Improved Moisture Resistance and Reduced Hysteresis.

Silvia CollaviniMichael SalibaWolfgang R TressPhilippe J HolzheySebastian F VölkerKonrad DomanskiSilver H Turren-CruzAmita UmmadisinguShaik M ZakeeruddinAnders HagfeldtMichael GrätzelJuan Luis Delgado
Published in: ChemSusChem (2018)
A series of [60]fullerenes covalently functionalized with the polymer poly(ethylene glycol) is presented. These new [60]fullerene-based materials have been incorporated as additives in CH3 NH3 PbI3 (MAPbI3 ), the most common organic-inorganic perovskite used in perovskite solar cells. The extensive photovoltaic study performed by using these materials shows several beneficial effects on the performance of these cells, including a reduction in hysteresis and an increased stability against moisture, whereby the solar cells retain up to 97 % of their initial power conversion efficiency in an ambient atmosphere.
Keyphrases
  • perovskite solar cells
  • solar cells
  • induced apoptosis
  • air pollution
  • cell cycle arrest
  • particulate matter
  • quantum dots
  • ionic liquid
  • signaling pathway
  • mass spectrometry
  • high resolution
  • metal organic framework