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Inverted All-Inorganic CsPbI<sub>2</sub>Br Perovskite Solar Cells with Promoted Efficiency and Stability by Nickel Incorporation
90
Citations
45
References
2019
Year
EngineeringOrganic Solar CellPromoted EfficiencyHalide PerovskitesChemistryPerovskite ModulePhotovoltaicsChemical EngineeringPerovskite CrystallinitySolar Cell StructuresInverted ArchitectureMaterials SciencePerovskite FilmInorganic ElectronicsNickel IncorporationPerovskite MaterialsLead-free PerovskitesPerovskite Solar CellSolar CellsFunctional MaterialsSolar Cell Materials
All-inorganic CsPbI2Br perovskite solar cell with an inverted architecture of indium-tin oxide/poly[3-(4-carboxylbutyl)thiophene]/CsPbI2Br/(6,6)-phenyl-C61-butyric acid methyl ester/C60/bathocuproine/Ag was fabricated. Together with the incorporation of nickel iodide, perovskite crystallinity and film morphology were promoted. Also, suppressed trap-state density in perovskite film was accomplished due to the passivation effect. Consequently, enhanced champion efficiency of 13.88% with VOC of 1.141 V, JSC of 16.02 mA/cm2, and fill factor of 75.96% was delivered by the doped optimal device, compared with the efficiency of 11.97% of the reference device. Superior device stability was demonstrated for the optimal device both in ambient atmosphere and N2-filled glovebox, without encapsulation. Moreover, improved light stability was also confirmed for optimal device by prolonged operation time, under continuous illumination of simulated solar spectrum. In addition, high-temperature annealing or sintering of interlayer was eliminated by utilizing solution-processed poly[3-(4-carboxylbutyl)thiophene]-CH3NH2 (P3CT-CH3NH2) as the hole-transport layer. This work provides an alternative inverted architecture and an effective ion-doping strategy for efficient and stable all-inorganic perovskite solar cells (PSCs), which would help promote the development of PSC technology.
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