Publication | Closed Access
SnO<sub>2</sub>‐C<sub>60</sub> Pyrrolidine Tris‐Acid (CPTA) as the Electron Transport Layer for Highly Efficient and Stable Planar Sn‐Based Perovskite Solar Cells
59
Citations
36
References
2019
Year
Fasni 3EngineeringHalide PerovskitesPhotovoltaic DevicesChemistryPerovskite Solar CellsPhotovoltaicsStable PlanarSolar Cell StructuresHybrid PerovskitesCharge ExtractionPlanar Solar CellsMaterials ScienceElectrical EngineeringPerovskite MaterialsEnergy StorageLead-free PerovskitesElectron Transport LayerPerovskite Solar CellSolar CellsFunctional MaterialsSolar Cell Materials
Abstract For solar cell applications, Sn‐based hybrid perovskites have drawn particular interest due to their environmental friendliness. Here, a thin layer of C 60 pyrrolidine tris‐acid (CPTA) is found essential for achieving high efficiency with planar solar cells of Sn‐based perovskites. As a result, a power conversion efficiency of 7.40% is achieved for {en}FASnI 3 solar cells with a planar n–i–p architecture, and the device exhibits excellent stability in air. For the first time, highly efficient Sn‐based hybrid perovskite solar cells on n–i–p architecture are achieved. A V oc of 0.72 V is highlighted as the highest V oc ever reported for FASnI 3 solar cells.
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