Journal of the American Chemical Society · 2014 · 251 citations · 31 references
New HoleEngineeringOrganic Solar CellHole Transporting MaterialHalide PerovskitesChemistryPerovskite Solar CellsPerovskite ModuleEffective Hole MobilityPhotovoltaicsChemical EngineeringConjugated Quinolizino AcridineMaterials ScienceEnergy StorageLead-free PerovskitesVacuum LevelPerovskite Solar CellSolar CellsFunctional Materials
A low band gap quinolizino acridine based molecule was designed and synthesized as new hole transporting material for organic-inorganic hybrid lead halide perovskite solar cells. The functionalized quinolizino acridine compound showed an effective hole mobility in the same range of the state-of-the-art spiro-MeOTAD and an appropriate oxidation potential of 5.23 eV vs the vacuum level. The device based on this new hole transporting material achieved high power conversion efficiency of 12.8% under the illumination of 98.8 mW cm(-2), which was better than the well-known spiro-MeOTAD under the same conditions. Moreover, this molecule could work alone without any additives, thus making it to be a promising candidate for solid-state photovoltaic application.
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Sequential deposition as a route to high-performance perovskite-sensitized solar cells
Julian Burschka, Norman Pellet, Soo‐Jin Moon et al. · Nature · 2013 · 9.4K citations · Full text