Login / Signup

Bifacial all-perovskite tandem solar cells.

Bo ChenZhenhua YuArthur OnnoZhengshan J YuShangshang ChenJiantao WangZachary C HolmanJinsong Huang
Published in: Science advances (2022)
The efficiency of all-perovskite tandem devices falls far below theoretical efficiency limits, mainly because a widening bandgap fails to increase open-circuit voltage. We report on a bifacial all-perovskite tandem structures with an equivalent efficiency of 29.3% under back-to-front irradiance ratio of 30. This increases energy yield and reduces the required bandgap of a wide-bandgap cell. Open-circuit voltage deficit is therefore minimized, although its performance under only front irradiance is not ideal. The bifacial device needs a sputtered rear transparent electrode, which could reduce photon path length and deteriorate stability of Pb-Sn perovskites. Embedding a light-scattering micrometer-sized particle layer into perovskite to trap light, effectively increases absorptance by 5 to 15% in the infrared region. Using a nonacidic hole transport layer markedly stabilizes the hole-extraction interface by avoiding proton-accelerated formation of iodine. These two strategies together increase efficiency of semitransparent Pb-Sn cells from 15.6 to 19.4%, enabling fabrication of efficient bifacial all-perovskite tandem devices.
Keyphrases
  • solar cells
  • minimally invasive
  • heavy metals
  • stem cells
  • magnetic resonance imaging
  • risk assessment
  • computed tomography
  • bone marrow
  • room temperature
  • community dwelling
  • aqueous solution
  • low cost