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Reduced Interface-Mediated Recombination for High Open-Circuit Voltages in CH3NH3PbI3 Solar Cells

  • Perovskite solar cells with all-organic transport layers exhibit efficiencies rivaling their counterparts that employ inorganic transport layers, while avoiding high-temperature processing. Herein, it is investigated how the choice of the fullerene derivative employed in the electron-transporting layer of inverted perovskite cells affects the open-circuit voltage (V-OC). It is shown that nonradiative recombination mediated by the electron-transporting layer is the limiting factor for the V-OC in the cells. By inserting an ultrathin layer of an insulating polymer between the active CH3NH3PbI3 perovskite and the fullerene, an external radiative efficiency of up to 0.3%, a V-OC as high as 1.16 V, and a power conversion efficiency of 19.4% are realized. The results show that the reduction of nonradiative recombination due to charge-blocking at the perovskite/organic interface is more important than proper level alignment in the search for ideal selective contacts toward high V-OC and efficiency.

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Author details:Christian Michael WolffORCiDGND, Fengshuo Zu, Andreas Paulke, Lorena Perdigon Toro, Norbert Koch, Dieter NeherORCiDGND
DOI:https://doi.org/10.1002/adma.201700159
ISSN:0935-9648
ISSN:1521-4095
Title of parent work (English):Advanced materials
Publisher:Wiley-VCH
Place of publishing:Weinheim
Publication type:Article
Language:English
Year of first publication:2017
Publication year:2017
Release date:2020/04/20
Tag:electron-transport layers; nonradiative recombination; open-circuit voltage; perovskite solar cells
Volume:29
Number of pages:8
Funding institution:HyPerCells Joint Graduate School of the University of Potsdam; Helmholtz-Zentrum Berlin; Potsdam Graduate School; DFG [SFB951]
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Physik und Astronomie
Peer review:Referiert
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